Magnetic Plate Magnet Separators
magnetic plate, positioned above conveyors to prevent foreign bodies from being introduced to grinders, screws, and other valuable tools. Plate Magnets can be used in harsh environments, humidity, and temperatures. Wide range of use over or under the shooter, hopper, duct, and conveyor for dry or wet conditions.
These magnets generate a strong magnetic field that penetrates deep intothe transported product to extract metal contaminants. The magnet has five stainless steel sides and a painted steel plate with attachment points for attaching suspension chains.
Magnetic Plate Magnet Separators Features
1. Complete Stainless plate shielding for even dry conditions.
2. Available custom design for flange and any type of connections.
3. Available barrier stop design with a higher attraction force.

Specification of Magnetic Plate
1. Materials in SUS 304 and SUS 316.
2. Model PMC with a ferrite magnet or PMN with a neodymium magnet.
3. Available samarium cobalt magnet for high 300 degree C use.
|
Model |
L(mm) |
W(mm) |
C(mm) |
D(mm) |
Weight |
|
PMF115 |
159 |
131 |
219 |
191 |
10 |
|
PMF120 |
210 |
270 |
12 |
||
|
PMF125 |
261 |
321 |
15 |
||
|
PMF130 |
312 |
372 |
18 |
||
|
PMF135 |
363 |
423 |
21 |
||
|
PMF140 |
414 |
474 |
24 |
||
|
PMF145 |
465 |
525 |
26 |
||
|
PMF150 |
516 |
576 |
29 |
||
|
PMF155 |
566 |
626 |
32 |
||
|
PMF160 |
617 |
677 |
35 |
||
|
PMF215 |
159 |
200 |
219 |
260 |
14 |
|
PMF220 |
210 |
270 |
18 |
||
|
PMF225 |
261 |
321 |
22 |
||
|
PMF230 |
312 |
372 |
27 |
||
|
PMF235 |
363 |
423 |
31 |
||
|
PMF240 |
414 |
474 |
35 |
||
|
PMF245 |
465 |
525 |
39 |
||
|
PMF250 |
516 |
576 |
43 |
||
|
PMF255 |
566 |
626 |
48 |
||
|
PMF260 |
617 |
677 |
52 |
||
|
PMF315 |
159 |
275 |
219 |
335 |
16 |
|
PMF330 |
210 |
270 |
22 |
||
|
PMF335 |
261 |
321 |
29 |
||
|
PMF330 |
312 |
372 |
36 |
||
|
PMF335 |
363 |
423 |
42 |
||
|
PMF340 |
414 |
474 |
49 |
||
|
PMF345 |
465 |
525 |
56 |
||
|
PMF350 |
516 |
576 |
63 |
||
|
PMF355 |
566 |
626 |
69 |
||
|
PMF360 |
617 |
677 |
76 |

|
Model |
L(mm) |
W(mm) |
C(mm) |
D(mm) |
Weight |
|
PMN115 |
159 |
131 |
219 |
191 |
8 |
|
PMN120 |
210 |
270 |
9 |
||
|
PMN125 |
261 |
321 |
11 |
||
|
PMN130 |
312 |
372 |
14 |
||
|
PMN135 |
363 |
423 |
16 |
||
|
PMN140 |
414 |
474 |
18 |
||
|
PMN145 |
465 |
525 |
20 |
||
|
PMN150 |
516 |
576 |
22 |
||
|
PMN155 |
566 |
626 |
24 |
||
|
PMN160 |
617 |
677 |
27 |
||
|
PMN215 |
159 |
200 |
219 |
260 |
11 |
|
PMN220 |
210 |
270 |
14 |
||
|
PMN225 |
261 |
321 |
17 |
||
|
PMN230 |
312 |
372 |
21 |
||
|
PMN235 |
363 |
423 |
24 |
||
|
PMN240 |
414 |
474 |
27 |
||
|
PMN245 |
465 |
525 |
30 |
||
|
PMN250 |
516 |
576 |
34 |
||
|
PMN255 |
566 |
626 |
36 |
||
|
PMN260 |
617 |
677 |
40 |
||
|
PMN315 |
159 |
275 |
219 |
335 |
12 |
|
PMN330 |
210 |
270 |
17 |
||
|
PMN335 |
261 |
321 |
22 |
||
|
PMN330 |
312 |
372 |
27 |
||
|
PMN335 |
363 |
423 |
32 |
||
|
PMN340 |
414 |
474 |
37 |
||
|
PMN345 |
465 |
525 |
43 |
||
|
PMN350 |
516 |
576 |
47 |
||
|
PMN355 |
566 |
626 |
52 |
||
|
PMN360 |
617 |
677 |
58 |
How the Magnetic Plate Works
Magnetic plates work by generating a strong, focused magnetic field across the plate surface. As your material moves through a chute or along a conveyor, ferrous contaminants such as bolts, screws, and iron fines are attracted to the magnetic field and securely held in place.
Clean material continues downstream, while trapped metal remains on the plate until cleaning. Because plate magnets use permanent magnets, you don't need power, controls, or moving parts. When you install the plate magnet close to the material flow and size it correctly, you achieve consistent, reliable metal separation with minimal maintenance.
Applications for Suspended Plate Magnets
You use suspended plate magnets wherever bulk material must be protected from tramp iron before reaching critical equipment. They are commonly installed on conveyors, chutes, and hoppers to remove metal contaminants early in the process.
Typical applications include mining and aggregates, where plate magnets protect crushers and screens; recycling and waste processing, to prevent metal damage; and plastics, wood, and biomass, where iron fragments can harm downstream machinery. They are also widely used in grain, feed, and food processing to improve product purity. When properly sized, plate magnets help you reduce downtime, protect equipment, and maintain stable production.

FAQ
Q: What suspension height gives the best separation?
A: You get the best separation when the plate magnet is installed as close to the material as safely possible. A shorter distance between the magnet and the material improves magnetic capture, especially for small or weakly magnetic iron.
Q: How often should a magnetic plate be cleaned?
A: Cleaning frequency depends on contamination levels. Low tramp iron requires periodic cleaning, while high or continuous contamination is better handled with self-cleaning designs to maintain stable performance.
Q: Which magnet material is better for fine iron dust?
A: Rare earth (NdFeB) magnets are better for fine iron dust due to their higher surface magnetic strength, which improves capture of small particles.
Q: Are stainless steel housings available?
A: Yes. Plate magnets are commonly available with 304 or 316L stainless steel housings, suitable for food, chemical, or corrosive environments.
Q: Can magnetic plate magnets be custom-sized?
A: Yes. Plate magnets can be custom-sized to match your conveyor width, chute opening, or installation space, ensuring full coverage and effective separation.
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