Isostatic cool pressing method for preparing anisotropic bonded magnet with high degree of orientation
A cold isostatic pressing, anisotropic technology, used in the manufacture of inductors/transformers/magnets, electrical components, circuits, etc., can solve the problem that the magnetic powder cannot be completely oriented freely, and achieve easy complex shape, high degree of orientation, and easy preparation. Effect
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Embodiment 1
[0022] Experimental materials: commercially available anisotropic strontium ferrite magnetic powder of 0.9-1um, bisphenol A epoxy resin, dicyandiamide curing agent, acetone, and a silicone mold with a wall thickness of about 2mm.
[0023] Step 1: Mix 20g of bisphenol A type epoxy resin, 3g of dicyandiamide curing agent and 8g of acetone, fully stir and mix evenly to prepare the binder premix;
[0024] Step 2: Add 100g of magnetic powder into the premixed solution, stir and mix evenly, inject the prepared slurry into a soft silicone mold, and the viscosity of the magnetic slurry is lower than 3000cps;
[0025] Step 3: Heat the slurry at 50°C to volatilize the solvent, and align it in a 1.5T magnetic field for 1 min, heat it in vacuum at low temperature to remove acetone, and then vacuum-pack the prepared intermediate;
[0026] Step 4: The silicone mold containing the magnet is subjected to cold isostatic pressing, the cold isostatic pressing pressure is 200 MPa, and the holding...
Embodiment 2
[0033] Experimental materials: Tianjin McQueen magnetic MQA magnetic powder, bisphenol A epoxy resin, maleic anhydride curing agent, acetone, silicone mold with a wall thickness of about 3mm.
[0034] Step 1: Dissolve 20g of bisphenol A type epoxy resin and 6g of maleic anhydride curing agent in 12g of acetone, fully stir and mix evenly to prepare the binder premix;
[0035] Step 2: Add 200g of MQA magnetic powder into the premix solution, stir evenly under vacuum, inject the prepared slurry into a soft silicone mold, and the viscosity of the magnetic slurry is lower than 3000cps;
[0036] Step 3: Heat the slurry at 60°C to volatilize the solvent, orient the mold along the Z-axis of the mold in a 1.8T magnetic field for 5 minutes, heat slowly in vacuum at low temperature to remove the solvent, and then vacuum-pack the obtained intermediate.
[0037] Step 4: Perform cold isostatic pressing on the silicone mold containing the magnet, the pressure is 400MPa, and the holding time ...
Embodiment 3
[0044] Experimental materials: 0.9-1um commercially available anisotropic strontium ferrite magnetic powder, Tianjin McQueen Magnetic MQA magnetic powder, bisphenol A epoxy resin, dicyandiamide curing agent, acetone, silicone mold with a wall thickness of about 5mm.
[0045] Step 1: Mix 20g of bisphenol A epoxy resin and 2g of dicyandiamide curing agent with 30g of acetone, fully stir and mix evenly, and prepare the binder premix;
[0046] Step 2: Mix 8wt% strontium ferrite magnetic powder and 92wt% mass MQA magnetic powder evenly, then add the mixed magnetic powder into the premix, stir well and homogenize, inject the prepared slurry into a soft silicone mold, and the viscosity of the magnetic slurry less than 3000cps;
[0047] Step 3: Heat the slurry at 40°C to volatilize the solvent, orient the slurry in a 2T magnetic field for 10 minutes, heat in vacuum at low temperature to remove acetone, and then vacuum-pack the prepared intermediate;
[0048] Step 4: The silicone mold...
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