Understanding magnetic drawer separators
A magnetic drawer separator helps you remove tramp iron from dry, free-flowing powders and granules before contamination reaches your process. Your material passes through a housing filled with magnetic tubes arranged in rows, so even fine iron dust and small chips are captured while the clean product keeps moving. You typically mount it under a hopper, chute, or at a transfer point where flow is steady and easy to access for cleaning. To choose the right model, focus on your opening size, material behavior, contamination level, and cleaning method. With the right setup, you protect equipment, reduce rejects, and minimize downtime.
Understanding magnetic drawer separators
A magnetic drawer separator helps you remove tramp iron from dry, free-flowing powders and granules before contamination reaches your process. Your material passes through a housing filled with magnetic tubes arranged in rows, so even fine iron dust and small chips are captured while the clean product keeps moving. You typically mount it under a hopper, chute, or at a transfer point where flow is steady and easy to access for cleaning. To choose the right model, focus on your opening size, material behavior, contamination level, and cleaning method. With the right setup, you protect equipment, reduce rejects, and minimize downtime.
Features of magnetic drawers
1. Low energy consumption and no pollution.
2. Simple structure and easy installation.
3. The magnetic rods are arranged in a staggered manner, and the magnetic spacing is well-designed, making the magnetic regions more fully utilized.
Technical Drawing of a Magnetic Drawer
| Item No. | Flange | A | B | C | D | F | G | Magnetic Bar | Magnetic Grate |
Magneti Bar |
| Type | Diameter | Layer | Quantity | |||||||
| FL10002 | DN100 | 160 | 160 | 370 | Ø110 | 50 | 70 | Ø25 | 2 | 5 |
| FL10003 | 440 | 50 | 70 | Ø25 | 3 | 8 | ||||
| FL15002 | DN150 | 220 | 220 | 370 | Ø161 | 50 | 70 | Ø25 | 2 | 7 |
| FL15003 | 440 | 50 | 70 | Ø25 | 3 | 11 | ||||
| FL20002 | DN200 | 270 | 270 | 370 | Ø222 | 50 | 70 | Ø25 | 2 | 9 |
| FL20003 | 440 | 50 | 70 | Ø25 | 3 | 14 | ||||
| FL25002 | DN250 | 330 | 330 | 370 | Ø276 | 50 | 70 | Ø25 | 2 | 11 |
| FL25003 | 440 | 50 | 70 | Ø25 | 3 | 17 | ||||
| FL30002 | DN300 | 380 | 380 | 370 | Ø328 | 50 | 70 | Ø25 | 2 | 13 |
| FL30003 | 440 | 50 | 70 | Ø25 | 3 | 20 |
Magnetic Drawers Operating Temperature
The normal use temperature of the rare-earth alloy neodymium iron boron is less than 60 degrees Celsius (it is recommended to use it at normal temperature). If it is higher than 60 degrees Celsius, it will affect its life. When it is higher than 60 degrees Celsius, it is the SH value of the rare-earth alloy neodymium iron boron. The customer should specify the use temperature when ordering.
Packaging for magnetic drawers
To keep your magnetic drawer separator safe in transit, you want packaging that prevents impact damage, moisture exposure, and metal-on-metal contact. First, each drawer and housing is cleaned, dried, and protected with anti-rust film, then wrapped in foam to guard edges, seals, and connection surfaces. Strong magnets can attract loose steel during shipping, so the unit should be isolated with thick padding and fixed firmly to avoid shifting. Next, you place it in a reinforced carton or plywood crate with shock protection on all sides, plus "Magnet" and "Fragile" labels for handling. Before sealing, you confirm accessories, certificates, and your packing list-so you receive everything ready to install.
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