{"id":4668,"date":"2026-08-12T09:04:23","date_gmt":"2026-08-12T01:04:23","guid":{"rendered":"https:\/\/www.corvelanmag.com\/?post_type=product&#038;p=4668"},"modified":"2026-09-27T18:23:01","modified_gmt":"2026-09-27T10:23:01","slug":"wet-high-intensity-magnetic-separator","status":"publish","type":"product","link":"https:\/\/www.corvelanmag.com\/fr\/products\/wet-high-intensity-magnetic-separator\/","title":{"rendered":"S\u00e9parateur magn\u00e9tique \u00e0 plaques haute intensit\u00e9 par voie humide"},"content":{"rendered":"\t\t<div data-elementor-type=\"wp-post\" data-elementor-id=\"4668\" class=\"elementor elementor-4668\" data-elementor-post-type=\"product\">\n\t\t\t\t<div class=\"elementor-element elementor-element-629ff1f e-con e-atomic-element e-div-block-base e-default-div e-629ff1f-5605233 \" data-id=\"629ff1f\" data-element_type=\"e-div-block\" data-e-type=\"e-div-block\" data-interaction-id=\"629ff1f\" data-e-type=\"e-div-block\" data-id=\"629ff1f\">\n    \t\t<div class=\"elementor-element elementor-element-fb3f86a elementor-widget elementor-widget-html\" data-id=\"fb3f86a\" data-element_type=\"widget\" data-e-type=\"widget\" data-widget_type=\"html.default\">\n\t\t\t\t\t<section class=\"coverlan-pdp\" id=\"coverlan-wet-high-intensity-plate-magnetic-separator\"><style>\r\n\r\n.coverlan-pdp{--cl-blue:#1f67a4;--cl-dark:#15324a;--cl-ink:#23384a;--cl-muted:#5d6f7f;--cl-line:#d8e2ec;--cl-soft:#f5f8fb;--cl-soft2:#eef5fb;font-family:Arial,Helvetica,sans-serif;color:var(--cl-ink);line-height:1.65;background:#fff;}\r\n.coverlan-pdp *{box-sizing:border-box;}\r\n.coverlan-pdp section,.coverlan-pdp .cl-section{width:100%;}\r\n.coverlan-pdp .cl-inner{width:100%;max-width:1400px;margin:0 auto;padding:72px 0;}\r\n.coverlan-pdp h1,.coverlan-pdp h2,.coverlan-pdp h3{color:var(--cl-dark);line-height:1.2;margin:0 0 18px;}\r\n.coverlan-pdp h1{font-size:36px;}\r\n.coverlan-pdp h2{font-size:28px;}\r\n.coverlan-pdp h3{font-size:20px;}\r\n.coverlan-pdp p{margin:0 0 16px;}\r\n.coverlan-pdp a{color:var(--cl-blue);}\r\n.coverlan-pdp ul{padding-left:22px;margin:12px 0 0;}\r\n.coverlan-pdp li{margin:7px 0;}\r\n.coverlan-pdp .cl-hero{background:linear-gradient(135deg,#f6f9fc 0%,#edf5fb 100%);}\r\n.coverlan-pdp .cl-hero-grid{display:grid;grid-template-columns:minmax(0,1fr) minmax(520px,1fr);gap:46px;align-items:center;}\r\n.coverlan-pdp .cl-kicker{font-size:14px;letter-spacing:.08em;text-transform:uppercase;font-weight:700;color:var(--cl-blue);margin-bottom:12px;}\r\n.coverlan-pdp .cl-lead{font-size:19px;color:#40586c;max-width:800px;}\r\n.coverlan-pdp .cl-facts{display:grid;grid-template-columns:repeat(2,minmax(0,1fr));gap:12px;margin:26px 0;}\r\n.coverlan-pdp .cl-fact{background:#fff;border:1px solid var(--cl-line);border-radius:12px;padding:16px;}\r\n.coverlan-pdp .cl-fact strong{display:block;color:var(--cl-dark);font-size:14px;margin-bottom:4px;}\r\n.coverlan-pdp .cl-actions{display:flex;gap:12px;flex-wrap:wrap;margin-top:24px;}\r\n.coverlan-pdp .cl-btn{display:inline-block;padding:13px 20px;border-radius:8px;font-weight:700;text-decoration:none;border:1px solid var(--cl-blue);}\r\n.coverlan-pdp .cl-btn-primary{background:var(--cl-blue);color:#fff;}\r\n.coverlan-pdp .cl-btn-secondary{background:#fff;color:var(--cl-blue);}\r\n.coverlan-pdp .cl-visual{background:#fff;border:1px solid var(--cl-line);border-radius:16px;padding:14px;box-shadow:0 12px 28px rgba(24,60,90,.08);}\r\n.coverlan-pdp img{display:block;width:100%;height:auto;border-radius:10px;}\r\n.coverlan-pdp .cl-visual-note{font-size:13px;color:var(--cl-muted);margin:10px 2px 0;}\r\n.coverlan-pdp .cl-soft{background:var(--cl-soft);}\r\n.coverlan-pdp .cl-grid-3{display:grid;grid-template-columns:repeat(3,minmax(0,1fr));gap:18px;}\r\n.coverlan-pdp .cl-grid-4{display:grid;grid-template-columns:repeat(4,minmax(0,1fr));gap:16px;}\r\n.coverlan-pdp .cl-decision{font-weight:700;color:#244a69;}\r\n.coverlan-pdp .cl-card{background:#fff;border:1px solid var(--cl-line);border-radius:12px;padding:22px;}\r\n.coverlan-pdp .cl-card p:last-child{margin-bottom:0;}\r\n.coverlan-pdp .cl-answer{font-size:18px;font-weight:700;color:#244a69;margin-bottom:14px;}\r\n.coverlan-pdp .cl-callout{border-left:4px solid var(--cl-blue);background:var(--cl-soft2);padding:18px 20px;border-radius:6px;margin:20px 0;}\r\n.coverlan-pdp .cl-table-wrap{width:100%;overflow-x:auto;border:1px solid var(--cl-line);border-radius:12px;background:#fff;}\r\n.coverlan-pdp table{border-collapse:collapse;width:100%;min-width:760px;}\r\n.coverlan-pdp th,.coverlan-pdp td{padding:14px 16px;text-align:left;vertical-align:top;border-bottom:1px solid var(--cl-line);}\r\n.coverlan-pdp th{background:#edf4fa;color:var(--cl-dark);font-size:14px;}\r\n.coverlan-pdp tr:last-child td{border-bottom:0;}\r\n.coverlan-pdp .cl-split{display:grid;grid-template-columns:1fr 1fr;gap:24px;align-items:start;}\r\n.coverlan-pdp .cl-check{border-top:3px solid #3b8d6b;}\r\n.coverlan-pdp .cl-watch{border-top:3px solid #bb7a3b;}\r\n.coverlan-pdp .cl-no{border-top:3px solid #b85454;}\r\n.coverlan-pdp .cl-steps{display:grid;grid-template-columns:repeat(3,minmax(0,1fr));gap:16px;}\r\n.coverlan-pdp .cl-step{background:#fff;border:1px solid var(--cl-line);border-radius:12px;padding:20px;}\r\n.coverlan-pdp .cl-step b{display:inline-flex;width:34px;height:34px;border-radius:50%;align-items:center;justify-content:center;background:var(--cl-blue);color:#fff;margin-bottom:12px;}\r\n.coverlan-pdp .cl-faq-item{border-bottom:1px solid var(--cl-line);padding:20px 0;}\r\n.coverlan-pdp .cl-faq-item:last-child{border-bottom:0;}\r\n.coverlan-pdp .cl-rfq{background:#15324a;color:#fff;}\r\n.coverlan-pdp .cl-rfq h2,.coverlan-pdp .cl-rfq h3{color:#fff;}\r\n.coverlan-pdp .cl-rfq .cl-card{color:var(--cl-ink);}\r\n.coverlan-pdp .cl-rfq .cl-btn-primary{background:#fff;color:#15324a;border-color:#fff;}\r\n.coverlan-pdp .cl-mini{font-size:14px;color:var(--cl-muted);}\r\n@media(max-width:1024px){.coverlan-pdp .cl-inner{padding:60px 24px;}.coverlan-pdp .cl-hero-grid{grid-template-columns:1fr;}.coverlan-pdp .cl-grid-3,.coverlan-pdp .cl-grid-4,.coverlan-pdp .cl-steps{grid-template-columns:1fr 1fr;}}\r\n@media(max-width:767px){.coverlan-pdp .cl-inner{padding:46px 16px;}.coverlan-pdp h1{font-size:30px;}.coverlan-pdp h2{font-size:24px;}.coverlan-pdp .cl-lead{font-size:17px;}.coverlan-pdp .cl-facts,.coverlan-pdp .cl-grid-3,.coverlan-pdp .cl-grid-4,.coverlan-pdp .cl-split,.coverlan-pdp .cl-steps{grid-template-columns:1fr;}.coverlan-pdp .cl-actions{display:grid;grid-template-columns:1fr;}.coverlan-pdp .cl-btn{text-align:center;}.coverlan-pdp .cl-diagram{overflow-x:auto;-webkit-overflow-scrolling:touch;}.coverlan-pdp .cl-diagram img{width:900px;max-width:none;height:auto;}.coverlan-pdp .cl-hero .cl-diagram img{width:720px;}}\r\n\r\n\r\n.coverlan-pdp .cl-scenario-grid{display:grid;grid-template-columns:repeat(2,minmax(0,1fr));gap:18px;}\r\n.coverlan-pdp .cl-scenario{background:#fff;border:1px solid var(--cl-line);border-radius:12px;padding:22px;position:relative;}\r\n.coverlan-pdp .cl-scenario-tag{display:inline-block;font-size:12px;font-weight:700;letter-spacing:.06em;text-transform:uppercase;color:var(--cl-blue);background:#edf5fb;border-radius:999px;padding:5px 9px;margin-bottom:12px;}\r\n.coverlan-pdp .cl-scenario strong.cl-pick{display:block;color:#244a69;font-size:17px;margin:8px 0 10px;}\r\n.coverlan-pdp .cl-proof-list{margin-top:10px;padding-left:20px;}\r\n.coverlan-pdp .cl-proof-list li{margin:5px 0;}\r\n.coverlan-pdp .cl-flow{display:grid;grid-template-columns:repeat(4,minmax(0,1fr));gap:14px;counter-reset:flow;}\r\n.coverlan-pdp .cl-flow-item{background:#fff;border:1px solid var(--cl-line);border-radius:12px;padding:18px;}\r\n.coverlan-pdp .cl-flow-item:before{counter-increment:flow;content:counter(flow);display:inline-flex;width:30px;height:30px;border-radius:50%;align-items:center;justify-content:center;background:var(--cl-blue);color:#fff;font-weight:700;margin-bottom:10px;}\r\n.coverlan-pdp .cl-data-strip{display:grid;grid-template-columns:repeat(4,minmax(0,1fr));gap:12px;margin:20px 0 0;}\r\n.coverlan-pdp .cl-data-item{border:1px solid var(--cl-line);border-radius:10px;background:#fff;padding:15px;}\r\n.coverlan-pdp .cl-data-item strong{display:block;color:var(--cl-dark);margin-bottom:4px;}\r\n@media(max-width:1024px){.coverlan-pdp .cl-scenario-grid,.coverlan-pdp .cl-flow,.coverlan-pdp .cl-data-strip{grid-template-columns:1fr 1fr;}}\r\n@media(max-width:767px){.coverlan-pdp .cl-scenario-grid,.coverlan-pdp .cl-flow,.coverlan-pdp .cl-data-strip{grid-template-columns:1fr;}}\r\n\r\n.coverlan-pdp .cl-photo-grid{display:grid;grid-template-columns:repeat(2,minmax(0,1fr));gap:20px;margin-top:24px;align-items:start;}\r\n.coverlan-pdp .cl-photo-card{background:#fff;border:1px solid var(--cl-line);border-radius:14px;padding:12px;}\r\n.coverlan-pdp .cl-photo-card img{border-radius:10px;}\r\n.coverlan-pdp .cl-caption{font-size:13px;color:var(--cl-muted);margin:10px 3px 2px;}\r\n.coverlan-pdp .cl-spec-note{font-size:13px;color:var(--cl-muted);margin-top:12px;}\r\n.coverlan-pdp .cl-tech-highlights{display:grid;grid-template-columns:repeat(4,minmax(0,1fr));gap:12px;margin:22px 0;}\r\n.coverlan-pdp .cl-tech-highlights .cl-data-item{background:var(--cl-soft);}\r\n@media(max-width:1024px){.coverlan-pdp .cl-tech-highlights{grid-template-columns:1fr 1fr;}}\r\n@media(max-width:767px){.coverlan-pdp .cl-photo-grid,.coverlan-pdp .cl-tech-highlights{grid-template-columns:1fr;}}\r\n<\/style>\r\n<div class=\"cl-section cl-hero\">\r\n<div class=\"cl-inner cl-hero-grid\">\r\n<div>\r\n<div class=\"cl-kicker\">Wet magnetic separation \u00b7 plate type<\/div>\r\n<h1>Wet High-Intensity Plate Magnetic Separator<\/h1>\r\n<p class=\"cl-lead\"><strong>Choose this separator when your material is already wet and you need to remove weakly magnetic iron or recover weakly magnetic minerals.<\/strong> The target particles must be free enough from the main mineral for the magnetic field to act on them. We size the separator around your material, slurry flow and required product result. This page covers Corvelan\u2019s plate-type wet high-intensity magnetic separator for slurry. It does not represent every WHIMS or HGMS configuration.<\/p>\r\n<div class=\"cl-facts\">\r\n<div class=\"cl-fact\"><strong>Best For<\/strong>Wet slurry that flows evenly and stays reasonably stable.<\/div>\r\n<div class=\"cl-fact\"><strong>Typical Materials<\/strong>Quartz, silica, kaolin, feldspar, hematite, limonite and similar wet mineral feeds.<\/div>\r\n<div class=\"cl-fact\"><strong>Main Purpose<\/strong>Remove weakly magnetic iron-bearing particles or recover weakly magnetic minerals.<\/div>\r\n<div class=\"cl-fact\"><strong>Choose By<\/strong>Particle size, slurry condition, magnetic response, required flow and required product result.<\/div>\r\n<\/div>\r\n<div class=\"cl-actions\">\r\n<a class=\"cl-btn cl-btn-primary\" href=\"https:\/\/www.corvelanmag.com\/contact-us\/\">Get a Separator Recommendation<\/a>\r\n<a class=\"cl-btn cl-btn-secondary\" href=\"#selection\">See Which Separator Fits<\/a>\r\n<\/div>\r\n<\/div>\r\n<div class=\"cl-visual\"><img alt=\"Wet high-intensity plate magnetic separator with belt-type separation structure\" decoding=\"async\" loading=\"eager\" src=\"https:\/\/www.corvelanmag.com\/wp-content\/uploads\/2026\/09\/coverlan-wet-high-intensity-plate-magnetic-separator-real-product.webp\">\r\n\r\n<div class=\"cl-card\" style=\"margin-top:14px\"><strong>Quick Check<\/strong><p style=\"margin-top:6px\">Best fit: wet slurry + weakly magnetic iron or minerals + stable feed distribution.<\/p><\/div><\/div>\r\n<\/div>\r\n<\/div>\r\n<div class=\"cl-section\" id=\"selection\"><div class=\"cl-inner\">\r\n<h2>Which Magnetic Separator Should You Choose?<\/h2>\r\n<p class=\"cl-answer\">Start with two questions: Is the material wet or dry? Is the target strongly magnetic or weakly magnetic? These two answers usually tell us which separator to check first.<\/p>\r\n<div class=\"cl-table-wrap\"><table>\r\n<thead><tr><th>Your Material<\/th><th>What We Recommend<\/th><th>Why<\/th><th>What We Need to Check<\/th><\/tr><\/thead>\r\n<tbody>\r\n<tr><td><strong>Wet quartz or silica slurry; weak magnetic iron remains after washing or easy magnetic removal<\/strong><\/td><td class=\"cl-decision\">Choose the wet high-intensity plate separator.<\/td><td>The material is already wet and the remaining iron needs a stronger wet magnetic step.<\/td><td>Send particle size, solids level, current product analysis and the required result. We also need to know whether the iron is free from the quartz or silica particle.<\/td><\/tr>\r\n<tr><td><strong>Prepared kaolin or feldspar slurry; iron affects color or product quality<\/strong><\/td><td class=\"cl-decision\">Choose the wet plate separator, then test the real material if a product result must be guaranteed.<\/td><td>Fine slurry and weak magnetic iron can change with feed condition, so the real material matters.<\/td><td>Send the material source, particle size, solids level, current analysis and the property you want to improve.<\/td><\/tr>\r\n<tr><td><strong>Hematite, limonite or another weakly magnetic mineral in wet slurry<\/strong><\/td><td class=\"cl-decision\">Choose a high-intensity wet separator. Use the plate type when the slurry can spread evenly across the plate.<\/td><td>A low-intensity wet drum is usually not the first choice for a weakly magnetic target.<\/td><td>Send particle size, mineral analysis, required flow and the grade or recovery you need.<\/td><\/tr>\r\n<tr><td><strong>Magnetite-rich slurry or another strongly magnetic mineral<\/strong><\/td><td class=\"cl-decision\">Choose a wet drum magnetic separator first.<\/td><td>A strongly magnetic target normally does not need a high-intensity plate separator as the first step.<\/td><td>Send magnetite content, particle size, required flow and the recovery or grade target.<\/td><\/tr>\r\n<tr><td><strong>Dry, free-flowing weakly magnetic material<\/strong><\/td><td class=\"cl-decision\">Choose dry high-intensity separation before adding water.<\/td><td>Making slurry adds water handling and dewatering when the process may not need either one.<\/td><td>Send moisture, particle size, dust condition and required product result.<\/td><\/tr>\r\n<tr><td><strong>Iron is locked inside a non-magnetic particle, or the unwanted material is non-magnetic<\/strong><\/td><td class=\"cl-decision\">Do not add another magnetic separator first.<\/td><td>A stronger magnetic field cannot remove iron that is still locked inside the main particle. It also cannot capture a non-magnetic target.<\/td><td>Check whether grinding or another separation step is needed first.<\/td><\/tr>\r\n<\/tbody>\r\n<\/table><\/div>\r\n<div class=\"cl-actions\"><a class=\"cl-btn cl-btn-primary\" href=\"https:\/\/www.corvelanmag.com\/contact-us\/\">Send Your Slurry Data<\/a><\/div>\r\n<\/div><\/div>\r\n<div class=\"cl-section cl-soft\"><div class=\"cl-inner\">\r\n<h2>Wet Plate Separator vs WHIMS vs Wet Drum vs Dry High-Intensity<\/h2>\r\n<p class=\"cl-answer\">These machines are not the same. Choose the separator that matches the material state, magnetic response and required flow.<\/p>\r\n<div class=\"cl-table-wrap\"><table>\r\n<thead><tr><th>Separator<\/th><th>Choose It When<\/th><th>Do Not Choose It First When<\/th><\/tr><\/thead>\r\n<tbody>\r\n<tr><td><strong>Wet high-intensity plate<\/strong><\/td><td>The feed is slurry, the target is weakly magnetic and the slurry can spread evenly across the magnetic plate.<\/td><td>Magnetite is the main target, the material should stay dry, or the iron is still locked inside the main particle.<\/td><\/tr>\r\n<tr><td><strong>Wet drum<\/strong><\/td><td>A strongly magnetic mineral such as magnetite is the main target in slurry.<\/td><td>The remaining target is only weakly magnetic and needs a higher-intensity wet step.<\/td><\/tr>\r\n<tr><td><strong>Vertical-ring WHIMS \/ HGMS<\/strong><\/td><td>Choose a vertical-ring wet high-intensity magnetic separator (WHIMS) or high-gradient magnetic separator (HGMS) when its ring and matrix design handles the slurry and required flow better than a plate design.<\/td><td>Choose the plate type when the slurry can be spread well across the plate and the plate design is a better fit for the line.<\/td><\/tr>\r\n<tr><td><strong>Dry high-intensity<\/strong><\/td><td>The material is dry, free-flowing and the process does not need water.<\/td><td>The feed is already wet, or moisture and agglomeration make dry separation unstable.<\/td><\/tr>\r\n<\/tbody>\r\n<\/table><\/div>\r\n<\/div><\/div>\r\n<div class=\"cl-section cl-soft\" id=\"selection-scenarios\"><div class=\"cl-inner\">\r\n<h2>6 Typical Selection Scenarios<\/h2>\r\n<p class=\"cl-answer\">Use these examples as a first check. They show which separator to start with and what information should confirm the choice before sizing or testing.<\/p>\r\n<div class=\"cl-scenario-grid\">\r\n<div class=\"cl-scenario\"><span class=\"cl-scenario-tag\">Scenario A \u00b7 Wet quartz \/ silica<\/span><h3>Weakly Magnetic Iron Remains in Wet Quartz<\/h3><strong class=\"cl-pick\">Start with the wet high-intensity plate separator.<\/strong><p>This is a good fit when the quartz or silica is already a slurry, magnetite is not the main target and the remaining iron-bearing particles respond to high-intensity magnetic separation.<\/p><strong>What should confirm the choice:<\/strong><ul class=\"cl-proof-list\"><li>Particle-size data<\/li><li>Current Fe or Fe\u2082O\u2083 analysis<\/li><li>Mineral or XRD information when available<\/li><li>Feed and product samples from a material test when a result must be guaranteed<\/li><\/ul><\/div>\r\n<div class=\"cl-scenario\"><span class=\"cl-scenario-tag\">Scenario B \u00b7 Magnetite-rich slurry<\/span><h3>Magnetite Is the Main Magnetic Mineral<\/h3><strong class=\"cl-pick\">Start with a wet drum magnetic separator.<\/strong><p>Strongly magnetic magnetite normally does not need the plate separator as the first magnetic step. Remove the strong magnetic fraction first, then check whether a weaker magnetic fraction still needs a second step.<\/p><strong>What should confirm the choice:<\/strong><ul class=\"cl-proof-list\"><li>Mineral composition<\/li><li>Magnetic response of the feed<\/li><li>Required recovery or product grade<\/li><li>Results from the first magnetic stage<\/li><\/ul><\/div>\r\n<div class=\"cl-scenario\"><span class=\"cl-scenario-tag\">Scenario C \u00b7 Kaolin \/ feldspar<\/span><h3>The Order Includes a Required Fe, Brightness or Color Result<\/h3><strong class=\"cl-pick\">Start with wet plate separation and test the real material before promising the final result.<\/strong><p>Fine kaolin and feldspar can change with mineral type, dispersion, particle size and the way iron occurs in the feed. The real material matters more than a general field number.<\/p><strong>What should confirm the choice:<\/strong><ul class=\"cl-proof-list\"><li>Representative material sample<\/li><li>Current Fe or Fe\u2082O\u2083 analysis<\/li><li>Brightness or fired-color test when required<\/li><li>Same before-and-after lab analysis method<\/li><\/ul><\/div>\r\n<div class=\"cl-scenario\"><span class=\"cl-scenario-tag\">Scenario D \u00b7 Locked iron<\/span><h3>A Stronger Magnet Gives Little Improvement<\/h3><strong class=\"cl-pick\">Improve particle liberation before adding more magnetic intensity.<\/strong><p>If the iron is still locked inside the main mineral particle, another stronger magnetic stage may give only a small change. Finer grinding or another separation step may be needed first.<\/p><strong>What should confirm the choice:<\/strong><ul class=\"cl-proof-list\"><li>Mineral or microscope information<\/li><li>Results before and after finer grinding<\/li><li>Magnetic test results at the same sample condition<\/li><li>Check whether the iron is free or still locked in the particle<\/li><\/ul><\/div>\r\n<div class=\"cl-scenario\"><span class=\"cl-scenario-tag\">Scenario E \u00b7 Dry feldspar or mineral feed<\/span><h3>The Material Is Dry and Free-Flowing<\/h3><strong class=\"cl-pick\">Start with dry high-intensity magnetic separation.<\/strong><p>Do not make slurry only to use a wet separator when the process can stay dry. Wet separation becomes more practical when the existing process already uses washing, classification or slurry transport.<\/p><strong>What should confirm the choice:<\/strong><ul class=\"cl-proof-list\"><li>Feed moisture<\/li><li>Particle size<\/li><li>Dust and handling condition<\/li><li>Whether the next process step is wet or dry<\/li><\/ul><\/div>\r\n<div class=\"cl-scenario\"><span class=\"cl-scenario-tag\">Scenario F \u00b7 Fine weak-magnetic slurry<\/span><h3>The Ring-and-Matrix Design Better Fits the Required Flow<\/h3><strong class=\"cl-pick\">Compare a vertical-ring WHIMS with the plate separator.<\/strong><p>Both are wet high-intensity magnetic separators, but they move material through the magnetic area differently. Use the design that better matches the slurry, magnetic response and required continuous flow.<\/p><strong>What should confirm the choice:<\/strong><ul class=\"cl-proof-list\"><li>Particle-size distribution<\/li><li>Solids level and slurry flow<\/li><li>Required material flow<\/li><li>Side-by-side material testing when the choice is not clear<\/li><\/ul><\/div>\r\n<\/div>\r\n<div class=\"cl-callout\"><strong>Performance confirmation:<\/strong> When the order depends on Fe reduction, grade, recovery, brightness or product loss, confirm the selection with representative-material testing and an agreed test method.<\/div>\r\n<\/div><\/div><div class=\"cl-section cl-soft\" id=\"product-overview\"><div class=\"cl-inner\">\r\n<h2>See the Actual Plate-Type Separator<\/h2>\r\n<p class=\"cl-answer\">This series uses a belt-type wet plate design with a plate magnetic system, feed system, water system, magnetic discharge and adjustment system.<\/p>\r\n<div class=\"cl-split\">\r\n<div class=\"cl-photo-card\"><img decoding=\"async\" alt=\"Finished wet high-intensity plate magnetic separator showing belt, frame, drive and feed area\" loading=\"lazy\" src=\"https:\/\/www.corvelanmag.com\/wp-content\/uploads\/2026\/09\/coverlan-wet-high-intensity-plate-magnetic-separator-finished-unit.webp\"><\/div>\r\n<div class=\"cl-card\"><h3>Main Structure Confirmed in the Product Sheet<\/h3><ul>\r\n<li><strong>Plate magnetic system:<\/strong> creates the main high-intensity magnetic working area.<\/li>\r\n<li><strong>Belt-type transport:<\/strong> carries captured magnetic material toward the discharge area.<\/li>\r\n<li><strong>Feed system:<\/strong> spreads wet material across the working area.<\/li>\r\n<li><strong>Water system:<\/strong> supports flushing and removal of non-magnetic material.<\/li>\r\n<li><strong>Magnetic discharge:<\/strong> releases captured magnetic material at the discharge end.<\/li>\r\n<li><strong>Adjustment system:<\/strong> belt speed and plate angle can be changed for the material.<\/li>\r\n<\/ul><\/div>\r\n<\/div><\/div><\/div>\r\n<div class=\"cl-section\"><div class=\"cl-inner\">\r\n<h2>Where a Wet High-Intensity Plate Separator Fits Best<\/h2>\r\n<p class=\"cl-answer\">Use this separator when the feed is already wet, the target reacts to a strong magnetic field and the slurry can reach the magnetic plate evenly.<\/p><div class=\"cl-callout\"><strong>Typical candidate materials include:<\/strong> siderite, manganese-bearing ore, ilmenite and wolframite. Suitability should be confirmed through sample testing under the intended slurry and operating conditions.<\/div>\r\n<div class=\"cl-grid-3\">\r\n<div class=\"cl-card\"><h3>Quartz and Silica Iron Removal<\/h3><p><strong>Choose the wet plate separator when your quartz or silica is already wet and weakly magnetic iron still remains.<\/strong> If magnetite is still the main magnetic impurity, use a <a href=\"\/product\/wet-drum-magnetic-separator\/\">wet drum<\/a> first. If the iron is locked inside the quartz or silica particle, finer grinding or another separation step may be needed first.<\/p><\/div>\r\n<div class=\"cl-card\"><h3>Kaolin and Feldspar Purification<\/h3><p><strong>Choose the wet plate separator when the slurry is well prepared and the remaining iron reacts to the magnetic field.<\/strong> If you need a guaranteed Fe level, brightness or fired color, send us the real material for testing first. We will agree how samples are taken and how the result is checked.<\/p><\/div>\r\n<div class=\"cl-card\"><h3>Weakly Magnetic Mineral Recovery<\/h3><p><strong>Use high-intensity wet separation for hematite, limonite and similar weakly magnetic minerals.<\/strong> Choose the plate type when the slurry can spread evenly across the plate and the required material flow fits this machine style.<\/p><\/div>\r\n<\/div>\r\n<\/div><\/div>\r\n<div class=\"cl-section cl-soft\"><div class=\"cl-inner\">\r\n<h2>How Does a Wet High-Intensity Plate Magnetic Separator Work?<\/h2>\r\n<p class=\"cl-answer\">The slurry flows across a strong magnetic plate. Particles that react to the magnetic field are captured or carried away from the main slurry, while the remaining material continues to the other outlet.<\/p><div class=\"cl-photo-card\" style=\"margin:22px 0 28px\"><img decoding=\"async\" alt=\"Working principle of a wet high-intensity plate magnetic separator showing feed, magnetic fraction and non-magnetic fraction\" loading=\"lazy\" src=\"https:\/\/www.corvelanmag.com\/wp-content\/uploads\/2026\/09\/coverlan-wet-high-intensity-plate-magnetic-separator-working-principle.webp\"><p class=\"cl-caption\">Working-principle drawing: wet feed enters above the inclined belt; magnetic material is carried toward its discharge side while the non-magnetic stream continues to the other outlet.<\/p><\/div>\r\n<div class=\"cl-steps\">\r\n<div class=\"cl-step\"><b>1<\/b><h3>Prepare the Slurry<\/h3><p>Keep the slurry stable. Classify, disperse or condition the feed when needed so it reaches the separator in a usable form.<\/p><\/div>\r\n<div class=\"cl-step\"><b>2<\/b><h3>Spread the Feed<\/h3><p>Spread the slurry evenly across the magnetic plate. Uneven flow can overload one area and leave another area unused.<\/p><\/div>\r\n<div class=\"cl-step\"><b>3<\/b><h3>Capture Magnetic Particles<\/h3><p>The magnetic area pulls on particles that react to the field. The field where the particles actually travel matters more than one headline Gauss number.<\/p><\/div>\r\n<div class=\"cl-step\"><b>4<\/b><h3>Give the Material Enough Contact Time<\/h3><p>Flow, plate shape, angle and any moving part affect how long the material stays in the magnetic area.<\/p><\/div>\r\n<div class=\"cl-step\"><b>5<\/b><h3>Remove Captured Material<\/h3><p>The cleaning system removes the captured magnetic material so buildup does not cover the active area.<\/p><\/div>\r\n<div class=\"cl-step\"><b>6<\/b><h3>Collect Both Streams<\/h3><p>Magnetic and non-magnetic material leave through separate outlets. If the order includes a required product result, we compare samples taken from the same defined stream locations.<\/p><\/div>\r\n<\/div>\r\n<\/div><\/div><div class=\"cl-section cl-soft\" id=\"main-parts\"><div class=\"cl-inner\">\r\n<h2>Main Parts of the Wet Plate Separator<\/h2>\r\n<p class=\"cl-answer\">The separator uses dedicated parts for feed distribution, magnetic contact, transport and cleaning.<\/p>\r\n<div class=\"cl-photo-grid\">\r\n<div class=\"cl-photo-card\"><img decoding=\"async\" alt=\"Belt and drive area of a wet high-intensity plate magnetic separator\" loading=\"lazy\" src=\"https:\/\/www.corvelanmag.com\/wp-content\/uploads\/2026\/09\/coverlan-wet-high-intensity-plate-separator-belt-drive.webp\"><h3 style=\"margin-top:14px\">Belt and Drive<\/h3><p>The belt carries captured magnetic material away from the main magnetic area. Belt speed can be adjusted for different material conditions.<\/p><\/div>\r\n<div class=\"cl-photo-card\"><img decoding=\"async\" alt=\"Inclined plate and belt working area of a wet high-intensity magnetic separator\" loading=\"lazy\" src=\"https:\/\/www.corvelanmag.com\/wp-content\/uploads\/2026\/09\/coverlan-wet-high-intensity-plate-separator-inclined-working-area.webp\"><h3 style=\"margin-top:14px\">Inclined Working Area<\/h3><p>The plate slope can be adjusted. Changing the slope changes how the slurry travels across the magnetic working area, so we set it together with feed condition and belt speed.<\/p><\/div>\r\n<\/div>\r\n<div class=\"cl-grid-3\" style=\"margin-top:20px\">\r\n<div class=\"cl-card\"><h3>Feed System<\/h3><p>Spreads wet material across the working width so one area is not overloaded while another is underfed.<\/p><\/div>\r\n<div class=\"cl-card\"><h3>Water System<\/h3><p>Supports washing and helps non-magnetic material move away from the magnetic working area.<\/p><\/div>\r\n<div class=\"cl-card\"><h3>Magnetic Discharge<\/h3><p>Captured magnetic material is transported away from the main magnetic area and released at the discharge end.<\/p><\/div>\r\n<\/div>\r\n<\/div><\/div>\r\n<div class=\"cl-section\"><div class=\"cl-inner\">\r\n<h2>9 Factors That Change Separation Performance<\/h2>\r\n<p class=\"cl-answer\">A higher magnetic number does not automatically give a better product. The result also depends on the material, particle size, slurry and the way the feed moves across the magnetic area.<\/p>\r\n<div class=\"cl-table-wrap\"><table>\r\n<thead><tr><th>Factor<\/th><th>What It Changes<\/th><th>How We Use It<\/th><\/tr><\/thead>\r\n<tbody>\r\n<tr><td><strong>1. What minerals are in the feed?<\/strong><\/td><td>Different minerals react differently to the same magnetic field.<\/td><td>We first check what minerals are present and how much iron is in the feed. If you have lab analysis, XRF, XRD or previous magnetic test results, send them to us.<\/td><\/tr>\r\n<tr><td><strong>2. Is the iron free or locked inside the particle?<\/strong><\/td><td>Iron that is locked inside the main particle cannot behave like a separate magnetic particle.<\/td><td>The iron must be separated from the main mineral before magnetic separation can work well. This is called mineral liberation. If it is still locked, finer grinding or another separation step may be needed first.<\/td><\/tr>\r\n<tr><td><strong>3. Particle size<\/strong><\/td><td>Particle size changes settling, movement through the magnetic area and product loss.<\/td><td>If a very wide size range causes unstable flow, we may recommend classification before the separator.<\/td><\/tr>\r\n<tr><td><strong>4. How thick and stable is the slurry?<\/strong><\/td><td>Too much water means the machine must handle more liquid. Too much solid can make the slurry harder to spread evenly.<\/td><td>Tell us how much solid is in the slurry. This is often given as solids concentration or a water-to-solids ratio. We size the feed system around the normal running condition.<\/td><\/tr>\r\n<tr><td><strong>5. Does the slurry spread evenly?<\/strong><\/td><td>Channeling overloads one area and wastes another part of the magnetic plate.<\/td><td>We match the inlet and feed distributor to the working width and expected flow.<\/td><\/tr>\r\n<tr><td><strong>6. Magnetic strength where the material actually flows<\/strong><\/td><td>The useful magnetic force depends on the field where the particles pass.<\/td><td>If a magnetic value is required, we also agree where and how the reading is taken. One surface Gauss number does not describe the whole separation result.<\/td><\/tr>\r\n<tr><td><strong>7. How long does the material stay in the magnetic area?<\/strong><\/td><td>Too little time can reduce capture. Too much time can reduce flow or increase unwanted carryover.<\/td><td>We set the operating range from the machine shape, flow and material behavior.<\/td><\/tr>\r\n<tr><td><strong>8. How much magnetic material builds up?<\/strong><\/td><td>Buildup can cover the active area and carry non-magnetic product with it.<\/td><td>We match the cleaning or wash method to the expected magnetic load and product-loss risk.<\/td><\/tr>\r\n<tr><td><strong>9. How is the result checked?<\/strong><\/td><td>A test result can change when the sample point, test time, lab analysis method or calculation changes.<\/td><td>If the order includes a required separation result, we agree these test details before the test starts.<\/td><\/tr>\r\n<\/tbody>\r\n<\/table><\/div>\r\n<\/div><\/div>\r\n<div class=\"cl-section cl-soft\"><div class=\"cl-inner\">\r\n<h2>How We Configure the Separator for Your Material<\/h2>\r\n<p class=\"cl-answer\">We use the material, slurry behavior, required flow and product target to choose the working size and operating setup. A larger machine or a higher magnetic number is not automatically the better choice.<\/p>\r\n<div class=\"cl-table-wrap\"><table>\r\n<thead><tr><th>Your Condition<\/th><th>What We Change<\/th><th>Why It Matters<\/th><\/tr><\/thead><tbody>\r\n<tr><td><strong>Higher required flow<\/strong><\/td><td>Working width, working length and feed distribution.<\/td><td>The slurry needs enough active area to spread evenly instead of overloading one part of the plate.<\/td><\/tr>\r\n<tr><td><strong>Fine weakly magnetic particles<\/strong><\/td><td>Feed condition, belt speed and available magnetic contact time.<\/td><td>Fine particles may need stable flow and enough time in the magnetic area to respond.<\/td><\/tr>\r\n<tr><td><strong>High magnetic loading<\/strong><\/td><td>Belt transport and cleaning conditions.<\/td><td>Captured material must leave the magnetic area before buildup blocks active surface or carries good product with it.<\/td><\/tr>\r\n<tr><td><strong>Slurry does not spread evenly<\/strong><\/td><td>Feed distributor, inlet arrangement and flow condition.<\/td><td>Channeling lets some material bypass the strongest working area.<\/td><\/tr>\r\n<tr><td><strong>Abrasive or difficult slurry<\/strong><\/td><td>Wet-contact and wear protection.<\/td><td>The right wear parts reduce leakage, unplanned maintenance and early component damage.<\/td><\/tr>\r\n<tr><td><strong>Limited installation space<\/strong><\/td><td>Machine layout, inlet\/outlet positions, supports and access space.<\/td><td>The separator must fit the existing line without blocking inspection, cleaning or maintenance.<\/td><\/tr>\r\n<\/tbody><\/table><\/div>\r\n<div class=\"cl-split\" style=\"margin-top:22px\">\r\n<div class=\"cl-card\"><h3>How Belt Speed Changes Separation<\/h3><p>Belt speed changes how long captured material stays in the magnetic area and how quickly it is carried away. We set it around the material, magnetic loading and required product result rather than using one speed for every slurry.<\/p><\/div>\r\n<div class=\"cl-card\"><h3>How Plate Angle Changes Slurry Flow<\/h3><p>Plate angle changes how quickly slurry moves across the working area. If flow is too fast, contact time can fall. If material holds up or builds up, the flow and plate setting need to be corrected together.<\/p><\/div>\r\n<\/div>\r\n<div class=\"cl-callout\"><strong>Do not size the machine from one number alone.<\/strong> Working area, feed distribution, belt speed, plate angle, slurry condition and the required result all affect the final selection.<\/div>\r\n<\/div><\/div><div class=\"cl-section\" id=\"technical-data\"><div class=\"cl-inner\">\r\n<h2>Models and Technical Data<\/h2>\r\n<p class=\"cl-answer\">This permanent-magnet plate series is listed with 15,000 G magnetic intensity. Capacity figures are model-selection references; project capacity and separation results are confirmed from material properties and the agreed test conditions.<\/p>\r\n<div class=\"cl-tech-highlights\">\r\n<div class=\"cl-data-item\"><strong>Magnetic System<\/strong>Permanent NdFeB magnetic material<\/div>\r\n<div class=\"cl-data-item\"><strong>Listed Magnetic Intensity<\/strong>15,000 G<\/div>\r\n<div class=\"cl-data-item\"><strong>Adjustments<\/strong>Belt speed and plate slope<\/div>\r\n<div class=\"cl-data-item\"><strong>Process Type<\/strong>Wet belt-type plate separation<\/div>\r\n<\/div>\r\n<div class=\"cl-table-wrap\"><table>\r\n<thead><tr><th>Model<\/th><th>Working Zone (W \u00d7 L)<\/th><th>Listed Magnetic Intensity<\/th><th>Reference Capacity<\/th><th>Listed Power<\/th><\/tr><\/thead><tbody>\r\n<tr><td>PTBY-0815<\/td><td>800 \u00d7 1500 mm<\/td><td>15,000 G<\/td><td>8\u201310 t\/h<\/td><td>1.1 kW<\/td><\/tr>\r\n<tr><td>PTBY-1020<\/td><td>1000 \u00d7 2000 mm<\/td><td>15,000 G<\/td><td>10\u201315 t\/h<\/td><td>1.5 kW<\/td><\/tr>\r\n<tr><td>PTBY-1220<\/td><td>1200 \u00d7 2000 mm<\/td><td>15,000 G<\/td><td>15\u201320 t\/h<\/td><td>2.2 kW<\/td><\/tr>\r\n<tr><td>PTBY-1525<\/td><td>1500 \u00d7 2500 mm<\/td><td>15,000 G<\/td><td>20\u201335 t\/h<\/td><td>2.2 kW<\/td><\/tr>\r\n<tr><td>PTBY-2030<\/td><td>2000 \u00d7 3000 mm<\/td><td>15,000 G<\/td><td>25\u201330 t\/h<\/td><td>3 kW<\/td><\/tr>\r\n<tr><td>PTBY-2525<\/td><td>2500 \u00d7 2500 mm<\/td><td>15,000 G<\/td><td>35\u201340 t\/h<\/td><td>4 kW<\/td><\/tr>\r\n<tr><td>PTBY-2530<\/td><td>2500 \u00d7 3000 mm<\/td><td>15,000 G<\/td><td>35\u201340 t\/h<\/td><td>4 kW<\/td><\/tr>\r\n<\/tbody><\/table><\/div>\r\n<p class=\"cl-spec-note\"><strong>Selection basis:<\/strong> Confirm the final model and performance criteria from representative material, feed conditions and an agreed test method.<\/p>\r\n<div class=\"cl-callout\"><strong>Gauss is not separation efficiency.<\/strong> The 15,000 G value is the magnetic intensity listed in the published technical specifications. A meaningful comparison also needs the same measurement position and method. Final purchase checks should state the reading point when a magnetic value is part of the order.<\/div>\r\n<div class=\"cl-callout\"><strong>Electrical planning:<\/strong> the published model table lists a power value for each model, but the final technical quotation should state exactly what that power covers before it is used for plant electrical design.<\/div>\r\n<\/div><\/div><div class=\"cl-section cl-soft\" id=\"capacity-basis\"><div class=\"cl-inner\">\r\n<h2>How to Read the Capacity Data<\/h2>\r\n<p class=\"cl-answer\">The same separator can handle different mass flow on different materials. Use the listed t\/h as a starting point, then check the real feed before selecting the model.<\/p>\r\n<div class=\"cl-grid-3\">\r\n<div class=\"cl-card\"><h3>Particle Size<\/h3><p>Coarse and fine particles move differently in slurry and do not contact the magnetic area in the same way.<\/p><\/div>\r\n<div class=\"cl-card\"><h3>How Much Solid Is in the Slurry?<\/h3><p>A more concentrated slurry puts more solids into the working area and can change flow, loading and cleaning needs.<\/p><\/div>\r\n<div class=\"cl-card\"><h3>Material Density<\/h3><p>Two slurries with the same volume flow can carry very different tonnes per hour when the solids have different density.<\/p><\/div>\r\n<div class=\"cl-card\"><h3>Magnetic Mineral Content<\/h3><p>More magnetic material means more captured load, which changes transport and cleaning demand.<\/p><\/div>\r\n<div class=\"cl-card\"><h3>Feed Distribution<\/h3><p>The quoted working area only helps when the slurry is spread across it. Poor distribution can overload one part of the plate.<\/p><\/div>\r\n<div class=\"cl-card\"><h3>Required Product Result<\/h3><p>A target for Fe, grade, recovery or maximum product loss may require a different operating point from a simple magnetic-removal job.<\/p><\/div>\r\n<\/div>\r\n<div class=\"cl-callout\"><strong>For final sizing, send the real feed data.<\/strong> We use your particle size, slurry condition, material flow and required result to check which model should be quoted.<\/div>\r\n<\/div><\/div>\r\n<div class=\"cl-section\"><div class=\"cl-inner\">\r\n<h2>When This Separator Will Not Fix the Problem<\/h2>\r\n<p class=\"cl-answer\">A stronger magnet cannot correct the wrong feed condition or the wrong separation method. Fix these problems first.<\/p>\r\n<div class=\"cl-grid-3\">\r\n<div class=\"cl-card cl-no\"><h3>Iron Is Locked Inside the Particle<\/h3><p>Do not simply add a stronger magnetic separator. If the iron is still locked inside the main particle, the material may need finer grinding or another separation step first.<\/p><\/div>\r\n<div class=\"cl-card cl-no\"><h3>Magnetite Dominates<\/h3><p>Use a wet drum first for the strongly magnetic fraction. Add a high-intensity wet step only if weaker magnetic material still needs to be separated.<\/p><\/div>\r\n<div class=\"cl-card cl-no\"><h3>The Feed Should Stay Dry<\/h3><p>Use dry high-intensity separation when the material is free-flowing and there is no process reason to make slurry.<\/p><\/div>\r\n<div class=\"cl-card cl-watch\"><h3>Slurry Settles or Channels<\/h3><p>Fix agitation, feed stability or distribution first. Then size the separator around the real running condition.<\/p><\/div>\r\n<div class=\"cl-card cl-watch\"><h3>Particles Stick Together<\/h3><p>Scrub, disperse or classify the feed first when particles stick together and cannot reach the magnetic area properly.<\/p><\/div>\r\n<div class=\"cl-card cl-no\"><h3>The Unwanted Material Is Non-Magnetic<\/h3><p>Use a separation method that responds to the real contaminant. A magnetic separator cannot capture a non-magnetic target just by increasing the field.<\/p><\/div>\r\n<\/div>\r\n<\/div><\/div>\r\n<div class=\"cl-section cl-soft\"><div class=\"cl-inner\">\r\n<h2>Installation, Cleaning and Maintenance<\/h2>\r\n<p class=\"cl-answer\">Plan the feed, drainage, cleaning access, power and service space before the machine is built. Good layout reduces installation changes and makes routine maintenance easier.<\/p><div class=\"cl-photo-card\" style=\"margin:22px 0 28px\"><img decoding=\"async\" alt=\"Wet high-intensity plate magnetic separator installed in a wet processing environment\" loading=\"lazy\" src=\"https:\/\/www.corvelanmag.com\/wp-content\/uploads\/2026\/09\/coverlan-wet-high-intensity-plate-separator-wet-process-installation.webp\"><p class=\"cl-caption\">Wet-process installation view showing the separator, piping and surrounding process equipment.<\/p><\/div>\r\n<div class=\"cl-grid-3\">\r\n<div class=\"cl-card\"><h3>Feed and Drainage<\/h3><p>Tell us whether the slurry comes by pump or gravity. We also need the inlet level, normal and peak flow, drainage and where both product streams go next.<\/p><\/div>\r\n<div class=\"cl-card\"><h3>Cleaning and Access<\/h3><p>We confirm how captured material is removed, where wash water goes and how much space is needed to inspect and clean the magnetic area.<\/p><\/div>\r\n<div class=\"cl-card\"><h3>Wear and Slurry Chemistry<\/h3><p>Tell us if the slurry is abrasive or has unusual pH, chloride or other chemistry that can affect wet-contact parts.<\/p><\/div>\r\n<div class=\"cl-card\"><h3>Drive and Controls<\/h3><p>Tell us the available voltage and frequency. We also confirm the motor, control panel, safety interlocks and any control signals needed from your plant.<\/p><\/div>\r\n<div class=\"cl-card\"><h3>Magnetic Safety<\/h3><p>Strong magnetic areas can pull in ferrous tools and parts. The installation needs suitable guarding, access control and safe maintenance procedures.<\/p><\/div>\r\n<div class=\"cl-card\"><h3>Isolation and Service<\/h3><p>Plan safe isolation for power, moving parts, water and slurry. Leave safe access to the areas that need inspection or cleaning.<\/p><\/div>\r\n<\/div>\r\n<\/div><\/div><div class=\"cl-section\" id=\"maintenance-spares\"><div class=\"cl-inner\">\r\n<h2>Maintenance and Spare Parts<\/h2>\r\n<p class=\"cl-answer\">The main maintenance risk is not the magnet itself; it is keeping the feed, belt, drive, water system and wear areas working consistently. Plan access and spare parts before the separator goes into service.<\/p>\r\n<div class=\"cl-table-wrap\"><table>\r\n<thead><tr><th>Area<\/th><th>What to Check<\/th><th>Why It Matters<\/th><\/tr><\/thead><tbody>\r\n<tr><td><strong>Belt<\/strong><\/td><td>Tracking, surface wear, damage and material buildup.<\/td><td>Poor tracking or belt damage can disturb transport through the magnetic area and cause unplanned downtime.<\/td><\/tr>\r\n<tr><td><strong>Drive<\/strong><\/td><td>Noise, vibration, lubrication condition and stable running.<\/td><td>Drive problems can stop material transport even when the magnetic system is working normally.<\/td><\/tr>\r\n<tr><td><strong>Bearings and Rotating Parts<\/strong><\/td><td>Noise, temperature and free movement.<\/td><td>Early inspection helps prevent sudden mechanical shutdown.<\/td><\/tr>\r\n<tr><td><strong>Water and Cleaning Points<\/strong><\/td><td>Blocked nozzles, uneven flow, leaks and buildup.<\/td><td>Cleaning problems can let captured material remain on the working area or contaminate the wrong stream.<\/td><\/tr>\r\n<tr><td><strong>Feed Distributor<\/strong><\/td><td>Blockage, buildup and uneven feed across the width.<\/td><td>Uneven feed can reduce the useful magnetic area and make results unstable.<\/td><\/tr>\r\n<tr><td><strong>Wet-Contact and Wear Areas<\/strong><\/td><td>Abrasion, corrosion, liners and leak points.<\/td><td>Wear depends on the slurry and should be checked before it causes leakage or structural damage.<\/td><\/tr>\r\n<\/tbody><\/table><\/div>\r\n<div class=\"cl-callout\"><strong>Ask for a spare-parts list with the quotation.<\/strong> The useful list should match the selected model and identify the wear and service parts that apply to that machine rather than using a generic spare-parts package.<\/div>\r\n<\/div><\/div>\r\n<div class=\"cl-section cl-soft\"><div class=\"cl-inner\">\r\n<h2>Before Quotation: What to Send<\/h2>\r\n<p class=\"cl-answer\">Start with four things: your material, the mineral you want to remove or recover, required material flow and whether the feed is wet or dry. We ask for more detail only when it changes machine sizing, testing or line connection.<\/p>\r\n<div class=\"cl-grid-3\">\r\n<div class=\"cl-card\"><h3>Material and Target<\/h3><p>Tell us the material name and what you want to remove or recover. If available, send lab analysis such as XRF or XRD and any mineral information.<\/p><\/div>\r\n<div class=\"cl-card\"><h3>Feed Condition<\/h3><p>Send particle size, how much solid is in the slurry or the water-to-solids ratio, and any settling, viscosity or dispersion problem that changes normal flow.<\/p><\/div>\r\n<div class=\"cl-card\"><h3>Flow and Product Requirement<\/h3><p>Send normal and peak material flow, the current product result and the result you need, such as Fe, Fe\u2082O\u2083, grade, recovery, brightness or maximum acceptable product loss.<\/p><\/div>\r\n<\/div>\r\n<div class=\"cl-callout\"><strong>What happens next:<\/strong> We compare the material with wet plate, wet drum, dry high-intensity and vertical-ring WHIMS options. If the wet plate separator fits, we move on to model sizing, line connection and any material test needed for the required result.<\/div>\r\n<\/div><\/div><div class=\"cl-section\" id=\"technical-quotation\"><div class=\"cl-inner\">\r\n<h2>What the Technical Quotation Should Confirm<\/h2>\r\n<p class=\"cl-answer\">The quotation should make it clear what machine is being supplied, what the selection is based on and what is included. That prevents a price comparison from hiding important technical differences.<\/p>\r\n<div class=\"cl-grid-4\">\r\n<div class=\"cl-card\"><h3>Selected Model<\/h3><p>Model, working area, listed technical data and the feed information used for selection.<\/p><\/div>\r\n<div class=\"cl-card\"><h3>Included Equipment<\/h3><p>Main machine, supplied drive, controls, accessories and other items that are actually part of the quoted supply.<\/p><\/div>\r\n<div class=\"cl-card\"><h3>Required Utilities<\/h3><p>Power, water, drainage and control connections that the selected machine needs from the plant.<\/p><\/div>\r\n<div class=\"cl-card\"><h3>Checks and Options<\/h3><p>Any magnetic reading, material test, spare parts, special inspection or other item that must be included in the order.<\/p><\/div>\r\n<\/div>\r\n<div class=\"cl-callout\"><strong>Do not approve the order from model name and price alone.<\/strong> Confirm the machine data, included items, line connections and required checks in the same technical quotation.<\/div>\r\n<\/div><\/div>\r\n<div class=\"cl-section cl-soft\"><div class=\"cl-inner\">\r\n<h2>Before Production: Check the Machine Layout<\/h2>\r\n<p class=\"cl-answer\">Before production, we confirm how the separator will fit your line. The general arrangement drawing, or GA drawing, should show the main size, feed inlet, both product outlets, supports and the space needed to inspect, clean and repair the machine.<\/p>\r\n<div class=\"cl-grid-4\">\r\n<div class=\"cl-card\"><h3>Machine Size and Supports<\/h3><p>Overall dimensions, support points, lifting needs and the space needed around the machine.<\/p><\/div>\r\n<div class=\"cl-card\"><h3>Inlet, Outlets and Water<\/h3><p>Feed inlet, magnetic-product outlet, non-magnetic outlet, drainage and water connections.<\/p><\/div>\r\n<div class=\"cl-card\"><h3>Plate, Belt and Cleaning<\/h3><p>Working area, feed distributor, belt arrangement, cleaning method and the access needed to inspect them.<\/p><\/div>\r\n<div class=\"cl-card\"><h3>Power and Controls<\/h3><p>Power supply, motors, control panel, safety interlocks and any signals exchanged with the plant control system.<\/p><\/div>\r\n<\/div>\r\n<div class=\"cl-callout\"><strong>Approve the layout before fabrication.<\/strong> A drawing check is the easiest time to catch an inlet height, outlet direction, support or maintenance-access problem.<\/div>\r\n<\/div><\/div>\r\n<div class=\"cl-section\"><div class=\"cl-inner\">\r\n<h2>Before Shipment: Confirm the Check List<\/h2>\r\n<p class=\"cl-answer\">Write the required checks into the order before production. Basic machine checks answer \u201cwas the correct machine built and does it run?\u201d Additional checks answer questions about magnetic readings, material performance or special inspection.<\/p>\r\n<div class=\"cl-split\">\r\n<div class=\"cl-card cl-check\"><h3>Core Machine Checks<\/h3><ul>\r\n<li>Correct model and machine identification.<\/li>\r\n<li>Key dimensions and inlet\/outlet positions against the approved drawing.<\/li>\r\n<li>Supplied mechanical functions and running direction.<\/li>\r\n<li>Supplied controls and safety functions that can be checked before shipment.<\/li>\r\n<li>Accessories and documents included in the order.<\/li>\r\n<\/ul><\/div>\r\n<div class=\"cl-card cl-watch\"><h3>Add These When the Order Requires Them<\/h3><ul>\r\n<li>Magnetic reading at a stated measurement position and method.<\/li>\r\n<li>Water or cleaning-system check.<\/li>\r\n<li>Specific control signals or interface checks.<\/li>\r\n<li>Customer witness or third-party inspection.<\/li>\r\n<li>Material separation test tied to a defined feed and lab analysis method.<\/li>\r\n<\/ul><\/div>\r\n<\/div>\r\n<div class=\"cl-callout\"><strong>A magnetic reading is not a separation test.<\/strong> If the order depends on Fe reduction, grade, recovery, brightness or another product result, use the real material and a defined sampling and lab analysis method for that test.<\/div>\r\n<\/div><\/div>\r\n<div class=\"cl-section cl-soft\" id=\"material-test-record\"><div class=\"cl-inner\">\r\n<h2>What a Material Test Should Show<\/h2>\r\n<p class=\"cl-answer\">A useful test record should make the feed, test condition, sample points and lab result clear. That lets you compare the test with the material that will run in production.<\/p>\r\n<div class=\"cl-table-wrap\"><table>\r\n<thead><tr><th>Test Item<\/th><th>What Should Be Recorded<\/th><th>Why It Matters<\/th><\/tr><\/thead>\r\n<tbody>\r\n<tr><td><strong>Feed sample<\/strong><\/td><td>Material name, sample ID, source and a photo of a sample that matches normal production material.<\/td><td>Shows exactly which material produced the result.<\/td><\/tr>\r\n<tr><td><strong>Feed condition<\/strong><\/td><td>Particle size, solids level, water condition and any preparation before the test.<\/td><td>A different feed condition can change separation behavior.<\/td><\/tr>\r\n<tr><td><strong>Target<\/strong><\/td><td>What must be removed or recovered and the required Fe, Fe\u2082O\u2083, grade, recovery, brightness or loss limit when applicable.<\/td><td>Stops the test from becoming a general demonstration with no clear pass point.<\/td><\/tr>\r\n<tr><td><strong>Machine setting<\/strong><\/td><td>The settings that can change the result, such as material flow, cleaning condition and other adjustable machine settings.<\/td><td>Makes the result repeatable and explains why two test runs may differ.<\/td><\/tr>\r\n<tr><td><strong>Sample points<\/strong><\/td><td>Feed, magnetic stream and non-magnetic stream when those streams are needed for the calculation.<\/td><td>Ensures the right streams are compared.<\/td><\/tr>\r\n<tr><td><strong>Lab method<\/strong><\/td><td>Use the same lab analysis method for feed and product samples.<\/td><td>Prevents a lab-method change from looking like a machine-performance change.<\/td><\/tr>\r\n<tr><td><strong>Before and after result<\/strong><\/td><td>Show feed and product results side by side. Recovery work also needs the measured mass and grade data used in the calculation.<\/td><td>Gives a direct, checkable comparison.<\/td><\/tr>\r\n<tr><td><strong>Test conclusion<\/strong><\/td><td>Whether the result met the target, what limited the result and what machine or process step we recommend next.<\/td><td>Turns the test into a clear selection decision.<\/td><\/tr>\r\n<\/tbody><\/table><\/div>\r\n<div class=\"cl-data-strip\">\r\n<div class=\"cl-data-item\"><strong>Photos<\/strong>Feed, product and test machine when available.<\/div>\r\n<div class=\"cl-data-item\"><strong>Lab Results<\/strong>XRF, XRD, Fe, Fe\u2082O\u2083, grade or other defined analysis.<\/div>\r\n<div class=\"cl-data-item\"><strong>Run Notes<\/strong>Feed condition and the settings that changed during the test.<\/div>\r\n<div class=\"cl-data-item\"><strong>Decision<\/strong>Which separator or next process step we recommend and why.<\/div>\r\n<\/div>\r\n<\/div><\/div>\r\n<div class=\"cl-section cl-soft\"><div class=\"cl-inner\">\r\n<h2>How We Check the Required Separation Result<\/h2>\r\n<p class=\"cl-answer\">If the order includes a guaranteed Fe level, grade, recovery or another separation result, define the material and test method before the guarantee is written into the order. The result only means something when the feed condition, sample points and lab analysis stay clear.<\/p>\r\n<div class=\"cl-table-wrap\"><table>\r\n<thead><tr><th>Your Requirement<\/th><th>What We Check<\/th><th>What Must Be Clear Before the Test<\/th><\/tr><\/thead><tbody>\r\n<tr><td><strong>A. You only need the machine checked<\/strong><\/td><td>Correct model, key dimensions, mechanical and electrical functions, plus a magnetic reading if that is part of the order.<\/td><td>The approved drawing, supplied functions, check list and the magnetic reading point if one is required.<\/td><\/tr>\r\n<tr><td><strong>B. You need a guaranteed Fe or Fe\u2082O\u2083 level<\/strong><\/td><td>Test the feed and product samples against the required product limit.<\/td><td>Material source, feed condition, sample points, test time, lab analysis method and required Fe result.<\/td><\/tr>\r\n<tr><td><strong>C. You need guaranteed recovery, grade or maximum product loss<\/strong><\/td><td>Measure the feed, magnetic stream and non-magnetic stream so mass and lab results can be used in the calculation.<\/td><td>How each outlet is counted, which measured weights are used, the lab analysis method and the calculation formula.<\/td><\/tr>\r\n<tr><td><strong>D. Your material source changes after the test<\/strong><\/td><td>Treat the old result as a reference until the new material is checked.<\/td><td>A sample from the new source, its feed condition and the result required from that material.<\/td><\/tr>\r\n<\/tbody><\/table><\/div>\r\n<div class=\"cl-actions\"><a class=\"cl-btn cl-btn-primary\" href=\"https:\/\/www.corvelanmag.com\/contact-us\/\">Discuss Your Required Product Result<\/a><\/div>\r\n<\/div><\/div>\r\n<div class=\"cl-section cl-soft\" id=\"from-material-to-shipment\"><div class=\"cl-inner\">\r\n<h2>From Material Data to Shipment<\/h2>\r\n<p class=\"cl-answer\">The process is simple: select the right separator, confirm the machine layout, define any required test, then check the finished machine against the order.<\/p>\r\n<div class=\"cl-flow\">\r\n<div class=\"cl-flow-item\"><h3>Send Material Data<\/h3><p>Material, target mineral or impurity, required flow and wet-feed condition.<\/p><\/div>\r\n<div class=\"cl-flow-item\"><h3>Choose the Separator Type<\/h3><p>Wet plate, wet drum, dry high-intensity or vertical-ring WHIMS.<\/p><\/div>\r\n<div class=\"cl-flow-item\"><h3>Decide on Material Testing<\/h3><p>Test the real material when the order depends on a separation result.<\/p><\/div>\r\n<div class=\"cl-flow-item\"><h3>Select the Model<\/h3><p>Use feed data, working area and required result to size the machine.<\/p><\/div>\r\n<div class=\"cl-flow-item\"><h3>Approve the GA Drawing<\/h3><p>Confirm size, inlet, outlets, supports and maintenance access.<\/p><\/div>\r\n<div class=\"cl-flow-item\"><h3>Manufacture the Equipment<\/h3><p>Build the machine to the approved order and drawing.<\/p><\/div>\r\n<div class=\"cl-flow-item\"><h3>Run the Confirmed Checks<\/h3><p>Check the machine and any extra test items written into the order.<\/p><\/div>\r\n<div class=\"cl-flow-item\"><h3>Pack and Ship<\/h3><p>Confirm included accessories and documents before packing.<\/p><\/div>\r\n<\/div>\r\n<\/div><\/div>\r\n<div class=\"cl-section cl-soft\" id=\"faq\"><div class=\"cl-inner\">\r\n<h2>Wet High-Intensity Magnetic Separator FAQ<\/h2>\r\n<div class=\"cl-faq-item\"><h3>What is a wet high-intensity plate magnetic separator?<\/h3><p><strong>It is a wet magnetic separator for slurry.<\/strong> The slurry flows across a strong magnetic plate. Weakly magnetic particles are captured while the remaining material continues to the other outlet.<\/p><\/div>\r\n<div class=\"cl-faq-item\"><h3>When should I choose a wet plate separator instead of a wet drum?<\/h3><p><strong>Choose a wet plate separator for weakly magnetic particles in slurry.<\/strong> Choose a wet drum first when magnetite or another strongly magnetic mineral is the main target.<\/p><\/div>\r\n<div class=\"cl-faq-item\"><h3>Is a wet plate separator the same as a vertical-ring WHIMS?<\/h3><p><strong>No.<\/strong> Both can work with weakly magnetic material in slurry, but they move the material through the magnetic area in different ways. Choose the plate type when the slurry can spread well across the plate. Compare a vertical-ring WHIMS or HGMS when its ring and matrix design is a better fit for the material flow.<\/p><\/div>\r\n<div class=\"cl-faq-item\"><h3>Can it reduce iron in quartz or silica sand?<\/h3><p><strong>Yes, when the quartz or silica is already wet and the remaining iron-bearing particles are free enough to react to the magnetic field.<\/strong> Use a wet drum first if magnetite is still the main magnetic impurity. A stronger magnetic field cannot solve iron that is still locked inside the quartz or silica particle.<\/p><\/div>\r\n<div class=\"cl-faq-item\"><h3>Can it be used for kaolin or feldspar slurry?<\/h3><p><strong>Yes, when the slurry is well prepared and the iron-bearing impurity reacts to the magnetic field.<\/strong> If you need a guaranteed Fe level, brightness or fired color, send us the real material first. We will agree how samples are taken and how the result is checked.<\/p><\/div>\r\n<div class=\"cl-faq-item\"><h3>Does higher Gauss guarantee better separation?<\/h3><p><strong>No. A higher Gauss reading does not automatically mean better separation.<\/strong> Gauss tells you the magnetic flux density at one reading point. The real result also depends on particle size, mineral type, whether the iron is free from the main particle, slurry condition, feed distribution, contact time and cleaning.<\/p><\/div>\r\n<div class=\"cl-faq-item\"><h3>What if the iron is locked inside the mineral particle?<\/h3><p><strong>Do not simply add a stronger magnetic separator.<\/strong> If the iron is locked inside the main particle, the material may need finer grinding or another separation step first.<\/p><\/div>\r\n<div class=\"cl-faq-item\"><h3>What information should I send for selection and quotation?<\/h3><p><strong>Start with four items: material, target mineral or impurity, required flow and slurry condition.<\/strong> If available, also send particle size, solids level, XRF or XRD results, current product analysis, line drawing and a sample that matches normal production material.<\/p><\/div>\r\n<div class=\"cl-faq-item\"><h3>Can separation performance be guaranteed?<\/h3><p>A guaranteed result must be tied to a defined material and test method. If the order includes Fe reduction, grade, recovery, product loss or another result, define the feed condition, sample points, test time, lab analysis method and calculation method before the guarantee is written into the order.<\/p><\/div>\r\n<div class=\"cl-faq-item\"><h3>What can be checked before shipment?<\/h3><p>Before shipment, check the machine against the approved drawing and order details. This can include key dimensions, inlet and outlet positions, supplied machine functions, magnetic reading points, accessories and shipping documents. A separation result needs a separate material test.<\/p><\/div>\r\n<\/div><\/div>\r\n<div class=\"cl-section cl-rfq\"><div class=\"cl-inner\">\r\n<h2>Send Material Data for Quotation<\/h2>\r\n<p class=\"cl-answer\" style=\"color:#d9e8f5\">Send us your material, target mineral or impurity, required flow and whether the feed is wet or dry. We will tell you which separator to start with, whether material testing is needed and what information we need next for the drawing and quotation.<\/p>\r\n<div class=\"cl-grid-3\">\r\n<div class=\"cl-card\"><h3 style=\"color:#000;\">Send First<\/h3><ul><li>Material or mineral name<\/li><li>Target impurity or magnetic mineral<\/li><li>Normal and peak material flow<\/li><li>Wet feed or slurry condition<\/li><\/ul><\/div>\r\n<div class=\"cl-card\"><h3 style=\"color:#000;\">Add If Available<\/h3><ul><li>Particle size<\/li><li>Solids level or water-to-solids ratio<\/li><li>XRF, XRD or other mineral analysis<\/li><li>Current and required product analysis<\/li><li>Sample that matches normal production material or previous test results<\/li><\/ul><\/div>\r\n<div class=\"cl-card\"><h3 style=\"color:#000;\">For Line Connection<\/h3><ul><li>Flowsheet, PFD or line drawing<\/li><li>Inlet and outlet positions<\/li><li>Available floor space and height<\/li><li>Water, power and signals exchanged with your plant control system<\/li><li>Required machine checks or separation test method<\/li><\/ul><\/div>\r\n<\/div>\r\n<h3 style=\"margin-top:30px\">What Happens Next?<\/h3>\r\n<p>We recommend the separator type, tell you what information is still missing, confirm whether material testing is needed and prepare the machine layout for the technical quotation.<\/p>\r\n<div class=\"cl-actions\"><a class=\"cl-btn cl-btn-primary\" href=\"https:\/\/www.corvelanmag.com\/contact-us\/\">Send Material Data for Quotation<\/a><\/div>\r\n<\/div><\/div>\r\n<script type=\"application\/ld+json\">\r\n{\r\n  \"@context\": \"https:\/\/schema.org\",\r\n  \"@graph\": [\r\n    {\r\n      \"@type\": \"Product\",\r\n      \"name\": \"Wet High-Intensity Plate Magnetic Separator\",\r\n      \"brand\": {\r\n        \"@type\": \"Brand\",\r\n        \"name\": \"Coverlan\"\r\n      },\r\n      \"manufacturer\": {\r\n        \"@type\": \"Organization\",\r\n        \"name\": \"Coverlan\"\r\n      },\r\n      \"category\": \"Wet high-intensity magnetic separation equipment\",\r\n      \"description\": \"Wet high intensity magnetic separator for silica, kaolin and weakly magnetic minerals. Compare plate type, WHIMS and wet drum options, then send material data for separator selection.\",\r\n      \"additionalProperty\": [\r\n        {\r\n          \"@type\": \"PropertyValue\",\r\n          \"name\": \"Separator type\",\r\n          \"value\": \"Wet belt-type plate magnetic separator\"\r\n        },\r\n        {\r\n          \"@type\": \"PropertyValue\",\r\n          \"name\": \"Listed magnetic intensity\",\r\n          \"value\": \"15,000 G\"\r\n        },\r\n        {\r\n          \"@type\": \"PropertyValue\",\r\n          \"name\": \"Adjustments\",\r\n          \"value\": \"Belt speed and plate slope\"\r\n        }\r\n      ],\r\n      \"image\": [\r\n        \"https:\/\/www.corvelanmag.com\/wp-content\/uploads\/2026\/09\/coverlan-wet-high-intensity-plate-magnetic-separator-real-product.webp\",\r\n        \"https:\/\/www.corvelanmag.com\/wp-content\/uploads\/2026\/09\/coverlan-wet-high-intensity-plate-magnetic-separator-finished-unit.webp\",\r\n        \"https:\/\/www.corvelanmag.com\/wp-content\/uploads\/2026\/09\/coverlan-wet-high-intensity-plate-magnetic-separator-working-principle.webp\",\r\n        \"https:\/\/www.corvelanmag.com\/wp-content\/uploads\/2026\/09\/coverlan-wet-high-intensity-plate-separator-belt-drive.webp\",\r\n        \"https:\/\/www.corvelanmag.com\/wp-content\/uploads\/2026\/09\/coverlan-wet-high-intensity-plate-separator-inclined-working-area.webp\",\r\n        \"https:\/\/www.corvelanmag.com\/wp-content\/uploads\/2026\/09\/coverlan-wet-high-intensity-plate-separator-wet-process-installation.webp\"\r\n      ]\r\n    },\r\n    {\r\n      \"@type\": \"FAQPage\",\r\n      \"mainEntity\": [\r\n        {\r\n          \"@type\": \"Question\",\r\n          \"name\": \"What is a wet high-intensity plate magnetic separator?\",\r\n          \"acceptedAnswer\": {\r\n            \"@type\": \"Answer\",\r\n            \"text\": \"It is a wet magnetic separator for slurry. The slurry flows across a strong magnetic plate. Weakly magnetic particles are captured while the remaining material continues to the other outlet.\"\r\n          }\r\n        },\r\n        {\r\n          \"@type\": \"Question\",\r\n          \"name\": \"When should I choose a wet plate separator instead of a wet drum?\",\r\n          \"acceptedAnswer\": {\r\n            \"@type\": \"Answer\",\r\n            \"text\": \"Choose a wet plate separator for weakly magnetic particles in slurry. Choose a wet drum first when magnetite or another strongly magnetic mineral is the main target.\"\r\n          }\r\n        },\r\n        {\r\n          \"@type\": \"Question\",\r\n          \"name\": \"Is a wet plate separator the same as a vertical-ring WHIMS?\",\r\n          \"acceptedAnswer\": {\r\n            \"@type\": \"Answer\",\r\n            \"text\": \"No. Both can work with weakly magnetic material in slurry, but they move the material through the magnetic area in different ways. Choose the plate type when the slurry can spread well across the plate. Compare a vertical-ring WHIMS or HGMS when its ring and matrix design is a better fit for the material flow.\"\r\n          }\r\n        },\r\n        {\r\n          \"@type\": \"Question\",\r\n          \"name\": \"Can it reduce iron in quartz or silica sand?\",\r\n          \"acceptedAnswer\": {\r\n            \"@type\": \"Answer\",\r\n            \"text\": \"Yes, when the quartz or silica is already wet and the remaining iron-bearing particles are free enough to react to the magnetic field. Use a wet drum first if magnetite is still the main magnetic impurity. A stronger magnetic field cannot solve iron that is still locked inside the quartz or silica particle.\"\r\n          }\r\n        },\r\n        {\r\n          \"@type\": \"Question\",\r\n          \"name\": \"Can it be used for kaolin or feldspar slurry?\",\r\n          \"acceptedAnswer\": {\r\n            \"@type\": \"Answer\",\r\n            \"text\": \"Yes, when the slurry is well prepared and the iron-bearing impurity reacts to the magnetic field. If you need a guaranteed Fe level, brightness or fired color, send us the real material first. We will agree how samples are taken and how the result is checked.\"\r\n          }\r\n        },\r\n        {\r\n          \"@type\": \"Question\",\r\n          \"name\": \"Does higher Gauss guarantee better separation?\",\r\n          \"acceptedAnswer\": {\r\n            \"@type\": \"Answer\",\r\n            \"text\": \"No. A higher Gauss reading does not automatically mean better separation. Gauss tells you the magnetic flux density at one reading point. The real result also depends on particle size, mineral type, whether the iron is free from the main particle, slurry condition, feed distribution, contact time and cleaning.\"\r\n          }\r\n        },\r\n        {\r\n          \"@type\": \"Question\",\r\n          \"name\": \"What if the iron is locked inside the mineral particle?\",\r\n          \"acceptedAnswer\": {\r\n            \"@type\": \"Answer\",\r\n            \"text\": \"Do not simply add a stronger magnetic separator. If the iron is locked inside the main particle, the material may need finer grinding or another separation step first.\"\r\n          }\r\n        },\r\n        {\r\n          \"@type\": \"Question\",\r\n          \"name\": \"What information should I send for selection and quotation?\",\r\n          \"acceptedAnswer\": {\r\n            \"@type\": \"Answer\",\r\n            \"text\": \"Start with four items: material, target mineral or impurity, required flow and slurry condition. If available, also send particle size, solids level, XRF or XRD results, current product analysis, line drawing and a sample that matches normal production material.\"\r\n          }\r\n        },\r\n        {\r\n          \"@type\": \"Question\",\r\n          \"name\": \"Can separation performance be guaranteed?\",\r\n          \"acceptedAnswer\": {\r\n            \"@type\": \"Answer\",\r\n            \"text\": \"A guaranteed result must be tied to a defined material and test method. If the order includes Fe reduction, grade, recovery, product loss or another result, define the feed condition, sample points, test time, lab analysis method and calculation method before the guarantee is written into the order.\"\r\n          }\r\n        },\r\n        {\r\n          \"@type\": \"Question\",\r\n          \"name\": \"What can be checked before shipment?\",\r\n          \"acceptedAnswer\": {\r\n            \"@type\": \"Answer\",\r\n            \"text\": \"Before shipment, check the machine against the approved drawing and order details. This can include key dimensions, inlet and outlet positions, supplied machine functions, magnetic reading points, accessories and shipping documents. A separation result needs a separate material test.\"\r\n          }\r\n        }\r\n      ]\r\n    }\r\n  ]\r\n}\r\n<\/script>\r\n<\/section>\n\n\t\t\t\t<\/div>\n\t\t\n<\/div>\n\t\t<\/div>\n\t\t","protected":false},"excerpt":{"rendered":"<p>Wet magnetic separation \u00b7 plate type Wet High-Intensity Plate Magnetic Separator Choose this separator when your material is already wet and you need to remove weakly magnetic iron or recover weakly magnetic minerals. The target particles must be free enough from the main mineral for the magnetic field to act on them. We size the [&hellip;]<\/p>\n","protected":false},"author":1,"featured_media":4484,"parent":0,"menu_order":13,"comment_status":"open","ping_status":"open","template":"","format":"standard","meta":{"_acf_changed":false,"footnotes":""},"product-category":[41],"class_list":["post-4668","product","type-product","status-publish","format-standard","has-post-thumbnail","hentry","product-category-magnetic-separation-equipment"],"acf":[],"_links":{"self":[{"href":"https:\/\/www.corvelanmag.com\/fr\/wp-json\/wp\/v2\/product\/4668","targetHints":{"allow":["GET"]}}],"collection":[{"href":"https:\/\/www.corvelanmag.com\/fr\/wp-json\/wp\/v2\/product"}],"about":[{"href":"https:\/\/www.corvelanmag.com\/fr\/wp-json\/wp\/v2\/types\/product"}],"author":[{"embeddable":true,"href":"https:\/\/www.corvelanmag.com\/fr\/wp-json\/wp\/v2\/users\/1"}],"replies":[{"embeddable":true,"href":"https:\/\/www.corvelanmag.com\/fr\/wp-json\/wp\/v2\/comments?post=4668"}],"version-history":[{"count":5,"href":"https:\/\/www.corvelanmag.com\/fr\/wp-json\/wp\/v2\/product\/4668\/revisions"}],"predecessor-version":[{"id":5295,"href":"https:\/\/www.corvelanmag.com\/fr\/wp-json\/wp\/v2\/product\/4668\/revisions\/5295"}],"wp:featuredmedia":[{"embeddable":true,"href":"https:\/\/www.corvelanmag.com\/fr\/wp-json\/wp\/v2\/media\/4484"}],"wp:attachment":[{"href":"https:\/\/www.corvelanmag.com\/fr\/wp-json\/wp\/v2\/media?parent=4668"}],"wp:term":[{"taxonomy":"product-category","embeddable":true,"href":"https:\/\/www.corvelanmag.com\/fr\/wp-json\/wp\/v2\/product-category?post=4668"}],"curies":[{"name":"wp","href":"https:\/\/api.w.org\/{rel}","templated":true}]}}