{"id":5942,"date":"2025-10-16T22:46:25","date_gmt":"2025-10-16T14:46:25","guid":{"rendered":"https:\/\/ct.semitanker.com\/?page_id=5942"},"modified":"2026-08-15T18:00:28","modified_gmt":"2026-08-15T10:00:28","slug":"plate-magnets","status":"publish","type":"page","link":"https:\/\/ct.semitanker.com\/it\/plate-magnets\/","title":{"rendered":"Magneti a piastra"},"content":{"rendered":"\t\t<div data-elementor-type=\"wp-page\" data-elementor-id=\"5942\" class=\"elementor elementor-5942\" data-elementor-post-type=\"page\">\n\t\t\t\t<div class=\"elementor-element elementor-element-dacaa95 e-con e-atomic-element e-div-block-base e-dacaa95-c4366dc \" data-id=\"dacaa95\" data-element_type=\"e-div-block\" data-e-type=\"e-div-block\" data-interaction-id=\"dacaa95\" data-e-type=\"e-div-block\" data-id=\"dacaa95\">\n    <div class=\"elementor-element elementor-element-6a5a108 e-con e-atomic-element e-div-block-base e-6a5a108-573cda8 \" data-id=\"6a5a108\" data-element_type=\"e-div-block\" 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h3{font-size:19px}.osenc-pdp .lead{font-size:17px}.osenc-pdp .hero{padding:34px 18px 40px;border-radius:12px}.osenc-pdp .section{padding:36px 16px}.osenc-pdp .card{padding:20px}.osenc-pdp .grid-4{grid-template-columns:1fr}.osenc-pdp .mid-cta{display:block}.osenc-pdp .mid-cta .btn{margin-top:18px}.osenc-pdp .cta{padding:28px 20px}.osenc-pdp .btn{width:100%;text-align:center}}\r\n<\/style>\r\n<div class=\"osenc-pdp\">\r\n  <nav class=\"breadcrumb\" aria-label=\"Breadcrumb\">\r\n    <a href=\"https:\/\/ct.semitanker.com\/\">Home<\/a> \/ \r\n    <span>Plate Magnets<\/span>\r\n  <\/nav>\r\n\r\n  <div class=\"hero\">\r\n    <div>\r\n      <span class=\"eyebrow\">Custom Magnetic Plate Separator<\/span>\r\n      <h1>Custom Plate Magnets for Chutes, Hoppers &amp; Gravity Flow<\/h1>\r\n      <p class=\"lead\">OSENC manufactures custom plate magnets for chutes, hoppers, spouts and gravity-flow points. Send us the material, contaminant target and installation drawing. We match the magnetic circuit, working face, mounting and cleaning access to the real process.<\/p>\r\n      <ul class=\"hero-list\">\r\n        <li>Ceramic\/ferrite and rare-earth magnetic circuit options<\/li>\r\n        <li>Flat and tapered-step working-face configurations<\/li>\r\n        <li>Custom plate dimensions and mounting to match your chute or hopper<\/li>\r\n        <li>Built around contaminant size, working distance, burden depth and temperature<\/li>\r\n      <\/ul>\r\n      <a class=\"btn\" href=\"https:\/\/ct.semitanker.com\/contact-us\/\">Send Your Chute Drawing<\/a>\r\n    <\/div>\r\n    <div class=\"media\"><img fetchpriority=\"high\" src=\"https:\/\/ct.semitanker.com\/wp-content\/uploads\/2026\/08\/osenc-plate-magnet-hero.webp\" width=\"1200\" height=\"900\" alt=\"OSENC plate magnet for chute and hopper ferrous separation\" fetchpriority=\"high\" decoding=\"async\"><\/div>\r\n  <\/div>\r\n\r\n  <div class=\"section\">\r\n    <span class=\"eyebrow\">OSENC Plate Magnet Capabilities<\/span>\r\n    <h2>Built Around the Process, Not a Catalog Number<\/h2>\r\n    <div class=\"grid-4\">\r\n      <div class=\"card\"><h3>Magnetic Circuit<\/h3><p>We choose ceramic\/ferrite or rare-earth circuits from the contaminant size, working distance and process temperature.<\/p><\/div>\r\n      <div class=\"card\"><h3>Working Face<\/h3><p>We use flat or tapered-step working faces to keep the product moving and help hold captured tramp iron.<\/p><\/div>\r\n      <div class=\"card\"><h3>Installation<\/h3><p>We size the plate and mounting interface around chute, hopper, spout and discharge-point drawings.<\/p><\/div>\r\n      <div class=\"card\"><h3>Cleaning Access<\/h3><p>We make sure the plate can actually be cleaned in the space you have, instead of treating maintenance as an afterthought.<\/p><\/div>\r\n    <\/div>\r\n  <\/div>\r\n\r\n  <div class=\"section soft\">\r\n    <span class=\"eyebrow\">Plate Magnet Types<\/span>\r\n    <h2>Magnetic Plate Separator Configurations<\/h2>\r\n    <div class=\"grid-3\">\r\n      <div class=\"card\"><h3>Flat Plate Magnet<\/h3><p>For applications where material can pass close to a simple magnetic working face without extra retention geometry.<\/p><\/div>\r\n      <div class=\"card\"><h3>Tapered-Step Plate Magnet<\/h3><p>The raised step creates a protected retention zone that helps reduce contaminant wash-off in moving bulk material.<\/p><\/div>\r\n      <div class=\"card\"><h3>Ceramic Plate Magnet<\/h3><p>Selected when larger tramp iron, magnetic reach and cost control are more important than maximum near-face field intensity.<\/p><\/div>\r\n      <div class=\"card\"><h3>Rare-Earth Plate Magnet<\/h3><p>Selected when fine ferrous contamination and stronger close-range magnetic capture are the priority.<\/p><\/div>\r\n      <div class=\"card\"><h3>Chute-Mounted Plate Magnet<\/h3><p>Mounted on a chute wall or gravity-flow section so the product passes directly across or close to the magnetic working face.<\/p><\/div>\r\n      <div class=\"card\"><h3>Custom Plate Assembly<\/h3><p>For project-specific envelopes, mounting interfaces, wear conditions and cleaning-access requirements.<\/p><\/div>\r\n    <\/div>\r\n  <\/div>\r\n\r\n  <div class=\"section\">\r\n    <span class=\"eyebrow\">Specifications<\/span>\r\n    <h2>Plate Magnet Specifications &amp; Customization<\/h2>\r\n    <div class=\"table-wrap\"><table>\r\n      <thead><tr><th>Specification<\/th><th>OSENC Configuration<\/th><th>What We Need From You<\/th><\/tr><\/thead>\r\n      <tbody>\r\n        <tr><td>Magnetic Circuit<\/td><td>Ceramic\/ferrite or rare-earth permanent magnet circuit<\/td><td>Contaminant type and size, required reach, temperature<\/td><\/tr>\r\n        <tr><td>Working Face<\/td><td>Flat or tapered-step configuration<\/td><td>Flow direction, velocity, burden depth, abrasion<\/td><\/tr>\r\n        <tr><td>Plate Size<\/td><td>Custom to the installation drawing<\/td><td>Chute\/hopper dimensions and available space<\/td><\/tr>\r\n        <tr><td>Mounting<\/td><td>Project-specific mounting interface<\/td><td>Hole locations, hinge\/latch requirements, installation photos<\/td><\/tr>\r\n        <tr><td>Construction<\/td><td>Stainless construction selected for the application<\/td><td>Required grade, hygiene, corrosion and washdown conditions<\/td><\/tr>\r\n        <tr><td>Magnetic Acceptance<\/td><td>Defined Gauss measurement method when specified<\/td><td>Target value, test distance, probe orientation and acceptance method<\/td><\/tr>\r\n        <tr><td>Temperature<\/td><td>Configured around the complete magnetic circuit and assembly<\/td><td>Maximum process and ambient temperature<\/td><\/tr>\r\n      <\/tbody>\r\n    <\/table><\/div>\r\n    <div class=\"mid-cta\"><p><strong>Have a chute or hopper drawing?<\/strong> Send the layout, material and contaminant target. We will turn it into a plate-magnet configuration for quotation.<\/p><a class=\"btn\" href=\"https:\/\/ct.semitanker.com\/contact-us\/\">Get a Plate Magnet Configuration<\/a><\/div>\r\n  <\/div>\r\n\r\n  <div class=\"section soft\">\r\n    <div class=\"grid-2\">\r\n      <div class=\"media\"><img loading=\"lazy\" src=\"https:\/\/ct.semitanker.com\/wp-content\/uploads\/2026\/08\/osenc-plate-magnet-tapered-step-detail.webp\" width=\"1200\" height=\"900\" alt=\"OSENC tapered-step plate magnet working face detail\" loading=\"lazy\" decoding=\"async\"><\/div>\r\n      <div>\r\n        <span class=\"eyebrow\">Working Principle<\/span>\r\n        <h2>How Plate Magnets Capture Tramp Iron<\/h2>\r\n        <p>Bulk material passes across or close to the magnetic working face. Ferrous contamination is attracted to the plate and retained while the non-magnetic product continues through the process.<\/p>\r\n        <p>A tapered step adds a protected area behind its leading edge, helping captured metal remain out of the main product stream. A flat working face is used where the material can approach the magnetic surface closely without this extra retention feature.<\/p>\r\n        <div class=\"note\"><strong>Magnetic performance is a system result.<\/strong> Working distance, burden depth, contaminant size and shape, flow behavior, magnetic circuit, face construction and temperature all affect real capture.<\/div>\r\n      <\/div>\r\n    <\/div>\r\n  <\/div>\r\n\r\n  <div class=\"section\">\r\n    <span class=\"eyebrow\">Magnetic Circuit Selection<\/span>\r\n    <h2>Ceramic vs. Rare-Earth Plate Magnets<\/h2>\r\n    <div class=\"grid-2\">\r\n      <div class=\"card\"><h3>Ceramic \/ Ferrite<\/h3><p>We use ceramic\/ferrite when the application prioritizes larger tramp iron, deeper magnetic reach, temperature margin and cost control. We check temperature against the complete plate design, not just the magnet material.<\/p><\/div>\r\n      <div class=\"card\"><h3>Rare-Earth \/ NdFeB<\/h3><p>We use rare-earth circuits where fine ferrous contamination and strong close-range capture matter more. Working gap, stainless face, magnetic-circuit geometry and operating temperature are defined together before the design is locked.<\/p><\/div>\r\n    <\/div>\r\n  <\/div>\r\n\r\n  <div class=\"section soft\">\r\n    <span class=\"eyebrow\">Applications<\/span>\r\n    <h2>Custom Magnetic Plate Separators for Bulk Material Processing<\/h2>\r\n    <div class=\"grid-3\">\r\n      <div class=\"card\"><h3>Food Ingredients<\/h3><p>For flour, grain, sugar, spices and other dry ingredients where ferrous contamination must be removed from gravity-flow points. Stainless grade, finish and hygiene requirements are specified by the project.<\/p><\/div>\r\n      <div class=\"card\"><h3>Plastics<\/h3><p>For pellets, resin and regrind before extrusion or molding equipment, helping capture tramp iron before it reaches downstream machinery.<\/p><\/div>\r\n      <div class=\"card\"><h3>Ceramics &amp; Minerals<\/h3><p>For clay, powders, sand, limestone and mineral feed where a clear flow path and broad magnetic working face suit the installation.<\/p><\/div>\r\n      <div class=\"card\"><h3>Wood Processing<\/h3><p>For wood chips and bulk material where nails, screws and other ferrous pieces can enter the process stream.<\/p><\/div>\r\n      <div class=\"card\"><h3>Recycling<\/h3><p>For selected gravity or discharge points where ferrous pieces must be removed before the next processing stage.<\/p><\/div>\r\n      <div class=\"card\"><h3>Chemical Powders<\/h3><p>For dry powders and granules when the product can pass close enough to the plate face for effective magnetic capture.<\/p><\/div>\r\n    <\/div>\r\n    <div class=\"mid-cta\"><p><strong>Not sure whether a plate magnet is the right separator?<\/strong> Send the material, particle size, flow path and contaminant target. We will match the separation point to the process.<\/p><a class=\"btn\" href=\"https:\/\/ct.semitanker.com\/contact-us\/\">Discuss Your Material &amp; Contaminant<\/a><\/div>\r\n  <\/div>\r\n\r\n  <div class=\"section\">\r\n    <div class=\"grid-2\">\r\n      <div>\r\n        <span class=\"eyebrow\">Why OSENC<\/span>\r\n        <h2>Why Source Plate Magnets from OSENC<\/h2>\r\n        <ul class=\"check-list\">\r\n          <li><strong>Application-matched magnetic circuit:<\/strong> we select the circuit around contaminant target, working distance, material flow and temperature instead of selling every project with one headline Gauss value.<\/li>\r\n          <li><strong>Built around your chute:<\/strong> we configure plate dimensions, mounting interface, working-face geometry and cleaning access from the installation layout.<\/li>\r\n          <li><strong>Defined magnetic acceptance:<\/strong> we define Gauss inspection by measurement position, probe orientation and working distance when the project requires a reproducible acceptance method.<\/li>\r\n          <li><strong>Magnetic separation engineering:<\/strong> plate magnets are part of our magnetic separation range, so we identify when a grate, drum or another separator is the better process choice.<\/li>\r\n        <\/ul>\r\n      <\/div>\r\n      <div class=\"media\"><img loading=\"lazy\" src=\"https:\/\/ct.semitanker.com\/wp-content\/uploads\/2026\/08\/osenc-factory-exterior.webp\" width=\"1200\" height=\"900\" alt=\"Plate magnet production and assembly reference image\" loading=\"lazy\" decoding=\"async\"><\/div>\r\n    <\/div>\r\n  <\/div>\r\n\r\n  <div class=\"section soft\">\r\n    <span class=\"eyebrow\">Installation &amp; Cleaning<\/span>\r\n    <h2>Design the Plate Around Flow and Maintenance Access<\/h2>\r\n    <p>We position the magnetic face where the product can pass close enough for useful capture without creating an unnecessary flow restriction. For chute and hopper projects, the drawing should show flow direction, installation angle, available mounting space, burden depth and the nearest product path to the magnetic face.<\/p>\r\n    <p>Cleaning access is treated as part of the design. Contaminant loading, shutdown frequency, operator access and guarding determine whether the plate needs straightforward manual access or a more integrated housing arrangement. We lock the mounting and cleaning method on the approved drawing before production.<\/p>\r\n  <\/div>\r\n\r\n  <div class=\"section\">\r\n    <div class=\"grid-2\">\r\n      <div class=\"media\"><img loading=\"lazy\" src=\"https:\/\/ct.semitanker.com\/wp-content\/uploads\/2026\/08\/osenc-magnetic-quality-inspection-tools.webp\" width=\"1200\" height=\"900\" alt=\"Magnetic inspection reference for plate magnet projects\" loading=\"lazy\" decoding=\"async\"><\/div>\r\n      <div>\r\n        <span class=\"eyebrow\">Quality Control<\/span>\r\n        <h2>Turn \u201cStrong Magnet\u201d Into Measurable Acceptance<\/h2>\r\n        <p>OSENC checks the plate dimensions, mounting details, working-face construction and the agreed magnetic test points against the approved drawing and inspection requirements. The goal is simple: the part must fit the installation, and the magnetic result must be measured the same way every time.<\/p>\r\n        <ul class=\"check-list\">\r\n          <li>Plate envelope and critical mounting dimensions<\/li>\r\n          <li>Working-face construction and agreed barrier condition<\/li>\r\n          <li>Defined magnetic test position and working distance<\/li>\r\n          <li>Installation fit and cleaning access against the approved drawing<\/li>\r\n        <\/ul>\r\n      <\/div>\r\n    <\/div>\r\n  <\/div>\r\n\r\n  <div class=\"section soft\">\r\n    <div class=\"grid-2\">\r\n      <div>\r\n        <span class=\"eyebrow\">Gauss Acceptance<\/span>\r\n        <h2>Define the Test Method Before Comparing Magnetic Strength<\/h2>\r\n        <p>A single peak Gauss number does not tell the whole story. Probe direction, pole position, stainless working face, wear layer and measurement distance can all change the reading.<\/p>\r\n        <div class=\"table-wrap\"><table>\r\n          <thead><tr><th>Test Item<\/th><th>What OSENC Defines Before Inspection<\/th><\/tr><\/thead>\r\n          <tbody>\r\n            <tr><td>Instrument<\/td><td>Use the agreed gaussmeter and probe setup for the project.<\/td><\/tr>\r\n            <tr><td>Probe Orientation<\/td><td>Keep the probe direction fixed relative to the working face.<\/td><\/tr>\r\n            <tr><td>Measurement Location<\/td><td>Use defined points on the drawing or inspection plan instead of searching for the highest random reading.<\/td><\/tr>\r\n            <tr><td>Working Distance<\/td><td>Measure at the working face or at the agreed operating gap, depending on what matters in the application.<\/td><\/tr>\r\n            <tr><td>Barrier Condition<\/td><td>State whether stainless steel, a wear layer or the chute wall sits between the magnet and probe.<\/td><\/tr>\r\n            <tr><td>Acceptance<\/td><td>Agree the value and test setup before the result is used for order acceptance.<\/td><\/tr>\r\n          <\/tbody>\r\n        <\/table><\/div>\r\n        <div class=\"note\" style=\"margin-top:20px\"><strong>Gauss is not pull force and Gauss is not separation efficiency.<\/strong> Each value requires its own defined test method and acceptance condition.<\/div>\r\n      <\/div>\r\n      <div class=\"media\"><img loading=\"lazy\" src=\"https:\/\/ct.semitanker.com\/wp-content\/uploads\/2026\/08\/osenc-dimensional-inspection.webp\" width=\"1200\" height=\"900\" alt=\"Dimensional inspection reference for magnetic components\" loading=\"lazy\" decoding=\"async\"><\/div>\r\n    <\/div>\r\n  <\/div>\r\n\r\n  <div class=\"section\">\r\n    <span class=\"eyebrow\">Separator Selection<\/span>\r\n    <h2>Plate Magnet vs. Grate Magnet vs. Magnetic Drum<\/h2>\r\n    <div class=\"table-wrap\"><table>\r\n      <thead><tr><th>Process Need<\/th><th>Plate Magnet<\/th><th>Grate \/ Tube Magnet<\/th><th>Magnetic Drum<\/th><\/tr><\/thead>\r\n      <tbody>\r\n        <tr><td>Gravity chute or hopper wall<\/td><td>Strong fit<\/td><td>Possible where product can flow through tubes<\/td><td>Usually a different process layout<\/td><\/tr>\r\n        <tr><td>Coarse or clumpy material<\/td><td>Useful clear-flow-path option<\/td><td>Bridging must be checked<\/td><td>Application dependent<\/td><\/tr>\r\n        <tr><td>Fine free-flowing powder<\/td><td>Useful when working distance is controlled<\/td><td>Multiple close-contact zones can be advantageous<\/td><td>Application dependent<\/td><\/tr>\r\n        <tr><td>Manual cleaning is acceptable<\/td><td>Strong fit<\/td><td>Strong fit<\/td><td>Usually unnecessary unless the process needs continuous separation<\/td><\/tr>\r\n        <tr><td>Continuous ferrous discharge<\/td><td>Not the first choice<\/td><td>Not the first choice<\/td><td>Strong fit when automatic discharge is required<\/td><\/tr>\r\n      <\/tbody>\r\n    <\/table><\/div>\r\n    <div class=\"related\" style=\"margin-top:20px\"><a href=\"https:\/\/ct.semitanker.com\/magnetic-drum-separator\/\">Magnetic Drum Separator<span>For process points that need continuous magnetic separation and automatic discharge.<\/span><\/a><a href=\"https:\/\/ct.semitanker.com\/quality-management\/\">OSENC Quality Management<span>Review our published magnetic and dimensional inspection capability.<\/span><\/a><\/div>\r\n  <\/div>\r\n\r\n  <div class=\"section soft\">\r\n    <span class=\"eyebrow\">RFQ Checklist<\/span>\r\n    <h2>Send These Inputs for a Plate Magnet Quote<\/h2>\r\n    <div class=\"grid-2\">\r\n      <ul class=\"check-list\">\r\n        <li>Material name, bulk density, particle size and moisture condition<\/li>\r\n        <li>Throughput or flow rate and approximate burden depth<\/li>\r\n        <li>Target ferrous contaminant type, size and expected loading<\/li>\r\n        <li>Chute\/hopper dimensions, flow direction, photos and drawing<\/li>\r\n        <li>Available working distance between product and magnetic face<\/li>\r\n      <\/ul>\r\n      <ul class=\"check-list\">\r\n        <li>Maximum process and ambient temperature<\/li>\r\n        <li>Required cleaning method and maintenance access<\/li>\r\n        <li>Stainless grade, surface finish, wear or hygiene requirement<\/li>\r\n        <li>Required magnetic acceptance method, if already defined<\/li>\r\n        <li>Quantity and required project schedule<\/li>\r\n        <li>If no magnetic test method is defined, send the real working gap and contaminant target<\/li>\r\n      <\/ul>\r\n    <\/div>\r\n  <\/div>\r\n\r\n  <div class=\"section\">\r\n    <span class=\"eyebrow\">FAQ<\/span>\r\n    <h2>Plate Magnet FAQ<\/h2>\r\n    <details><summary>What is a plate magnet?<\/summary><p>A plate magnet is a flat magnetic separator positioned beside, below or above a bulk-material flow to attract and retain ferrous contamination. Common installation points include chutes, hoppers, spouts and discharge areas.<\/p><\/details>\r\n    <details><summary>How do I size a plate magnet for my chute?<\/summary><p>Send the chute width, flow direction, available plate envelope, mounting details, burden depth and product path. OSENC uses those dimensions together with the contaminant and magnetic requirement to configure the plate and mounting interface.<\/p><\/details>\r\n    <details><summary>Should I choose ceramic or rare earth?<\/summary><p>Ceramic\/ferrite is the practical choice when larger tramp iron, magnetic reach, temperature margin and cost control are important. Rare-earth is preferred when stronger close-range capture of fine ferrous contamination is the priority.<\/p><\/details>\r\n    <details><summary>How close should material pass to the magnetic face?<\/summary><p>As close as the process safely allows while maintaining reliable flow. Magnetic field strength falls with distance, so the real product path and burden depth are more useful design inputs than a surface Gauss number alone.<\/p><\/details>\r\n    <details><summary>What Gauss value should I specify?<\/summary><p>Specify the value together with pole location, probe orientation, measurement distance, temperature and barrier condition. That gives both sides one test method that can be repeated during inspection.<\/p><\/details>\r\n    <details><summary>How often should a plate magnet be cleaned?<\/summary><p>Cleaning frequency depends on contaminant loading, flow rate and the amount of retained iron allowed by your process. Set the first cleaning interval during commissioning, then shorten or extend it from the amount of iron you actually collect.<\/p><\/details>\r\n    <details><summary>Can a plate magnet remove aluminum or copper?<\/summary><p>No. A permanent plate magnet is designed for ferrous or magnetically responsive contamination. Aluminum and copper are not captured in the same way and require another separation method.<\/p><\/details>\r\n    <details><summary>What should I send OSENC for a custom plate magnet?<\/summary><p>Send the material, contaminant target, flow rate, burden depth, temperature, chute or hopper drawing, working distance, cleaning requirement and any magnetic acceptance standard used by your plant.<\/p><\/details>\r\n  <\/div>\r\n\r\n  <div class=\"section\">\r\n    <div class=\"cta\">\r\n      <h2>Send Your Drawing. We\u2019ll Match the Plate Magnet to the Process.<\/h2>\r\n      <p>Send the material, contaminant target, chute dimensions, working distance, temperature and cleaning needs. OSENC will turn that into the magnetic circuit, working face and mounting details needed for a quote.<\/p>\r\n      <a class=\"btn\" href=\"https:\/\/ct.semitanker.com\/contact-us\/\">Request a Plate Magnet Quote<\/a>\r\n    <\/div>\r\n  <\/div>\r\n<\/div>\r\n<script type=\"application\/ld+json\">\r\n{\r\n  \"@context\":\"https:\/\/schema.org\",\r\n  \"@type\":\"Product\",\r\n  \"name\":\"Plate Magnets\",\r\n  \"url\":\"https:\/\/ct.semitanker.com\/plate-magnets\/\",\r\n  \"description\":\"Custom plate magnets and magnetic plate separators for chutes, hoppers and gravity-flow systems, with ceramic or rare-earth magnetic circuits, custom mounting and application-matched working faces.\",\r\n  \"category\":\"Magnetic Separation Component\",\r\n  \"brand\":{\"@type\":\"Brand\",\"name\":\"OSENC\"},\r\n  \"manufacturer\":{\"@type\":\"Organization\",\"name\":\"OSENC\",\"url\":\"https:\/\/ct.semitanker.com\/\"},\r\n  \"image\":[\r\n    \"https:\/\/ct.semitanker.com\/wp-content\/uploads\/2026\/08\/osenc-plate-magnet-hero.webp\",\r\n    \"https:\/\/ct.semitanker.com\/wp-content\/uploads\/2026\/08\/osenc-plate-magnet-tapered-step-detail.webp\"\r\n  ]\r\n}\r\n<\/script>\r\n<script type=\"application\/ld+json\">\r\n{\r\n  \"@context\":\"https:\/\/schema.org\",\r\n  \"@type\":\"BreadcrumbList\",\r\n  \"itemListElement\":[\r\n    {\"@type\":\"ListItem\",\"position\":1,\"name\":\"Home\",\"item\":\"https:\/\/ct.semitanker.com\/\"},\r\n    {\"@type\":\"ListItem\",\"position\":2,\"name\":\"Plate Magnets\",\"item\":\"https:\/\/ct.semitanker.com\/plate-magnets\/\"}\r\n  ]\r\n}\r\n<\/script>\r\n<script type=\"application\/ld+json\">\r\n{\r\n  \"@context\":\"https:\/\/schema.org\",\r\n  \"@type\":\"FAQPage\",\r\n  \"mainEntity\":[\r\n    {\"@type\":\"Question\",\"name\":\"What is a plate magnet?\",\"acceptedAnswer\":{\"@type\":\"Answer\",\"text\":\"A plate magnet is a flat magnetic separator positioned beside, below or above a bulk-material flow to attract and retain ferrous contamination. 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Ceramic\/ferrite and [&hellip;]<\/p>\n","protected":false},"author":14,"featured_media":5945,"parent":0,"menu_order":0,"comment_status":"closed","ping_status":"closed","template":"","meta":{"footnotes":""},"class_list":["post-5942","page","type-page","status-publish","has-post-thumbnail","hentry"],"_links":{"self":[{"href":"https:\/\/ct.semitanker.com\/it\/wp-json\/wp\/v2\/pages\/5942","targetHints":{"allow":["GET"]}}],"collection":[{"href":"https:\/\/ct.semitanker.com\/it\/wp-json\/wp\/v2\/pages"}],"about":[{"href":"https:\/\/ct.semitanker.com\/it\/wp-json\/wp\/v2\/types\/page"}],"author":[{"embeddable":true,"href":"https:\/\/ct.semitanker.com\/it\/wp-json\/wp\/v2\/users\/14"}],"replies":[{"embeddable":true,"href":"https:\/\/ct.semitanker.com\/it\/wp-json\/wp\/v2\/comments?post=5942"}],"version-history":[{"count":12,"href":"https:\/\/ct.semitanker.com\/it\/wp-json\/wp\/v2\/pages\/5942\/revisions"}],"predecessor-version":[{"id":8701,"href":"https:\/\/ct.semitanker.com\/it\/wp-json\/wp\/v2\/pages\/5942\/revisions\/8701"}],"wp:featuredmedia":[{"embeddable":true,"href":"https:\/\/ct.semitanker.com\/it\/wp-json\/wp\/v2\/media\/5945"}],"wp:attachment":[{"href":"https:\/\/ct.semitanker.com\/it\/wp-json\/wp\/v2\/media?parent=5942"}],"curies":[{"name":"wp","href":"https:\/\/api.w.org\/{rel}","templated":true}]}}