MOQ: | 100pcs |
Price: | As negotiation |
Standard Packaging: | cartons,pallets |
Delivery Period: | 20-25days |
Payment Method: | T/T L/C |
Supply Capacity: | 100 tons per month for NdFeB magnet |
Attribute | Value |
---|---|
Magnetic Orientation | Axial, Multi-polar, As Customization |
Grade | N35-N52 |
Shape | Customized |
Temperature Resistance | High |
Size | Customized |
Pull Force | High |
Application | New Energy Cars, Wind Power Generation, Servo Motors, Traction Motors |
Parameter Name | Parameter Values | Unit |
---|---|---|
Curie Temperature | 310~380 | ℃ |
Relative Recoil Permeability | 1.02~1.05 | |
Reversible Temperature Coefficient of Br (20~100℃) | -0.09~-0.13 | %/℃ |
Reversible Temperature Coefficient of Hcj (20~100℃) | -0.4~-0.7 | %/℃ |
Density | 7.50~7.70 | g/cm3 |
Vickers Hardness | 550~700 | |
Compressive Strength | 800 ~1050 | MPa |
Electric Resistivity | 150 | μΩ·cm |
Step | Description |
---|---|
1. Mixing | Mix the ingredients |
2. Melting | Dissolve the mixture at high temperature and prepare an alloy |
3. Fine pulverization | Turn the alloy into fine powder |
4. Molding in a magnetic field | Apply a magnetic field while pressing the powder to align magnetization directions |
5. Sintering and heat treatment | Sinter at about 1,100℃, then heat treat at about 600℃ to enhance magnetic characteristics |
6. Processing | Finish the magnet base material into the product shape |
7. Surface treatment | Apply rustproof surface treatment |
8. Magnetization | Apply a magnetic field to give the magnet its final magnetism |
MOQ: | 100pcs |
Price: | As negotiation |
Standard Packaging: | cartons,pallets |
Delivery Period: | 20-25days |
Payment Method: | T/T L/C |
Supply Capacity: | 100 tons per month for NdFeB magnet |
Attribute | Value |
---|---|
Magnetic Orientation | Axial, Multi-polar, As Customization |
Grade | N35-N52 |
Shape | Customized |
Temperature Resistance | High |
Size | Customized |
Pull Force | High |
Application | New Energy Cars, Wind Power Generation, Servo Motors, Traction Motors |
Parameter Name | Parameter Values | Unit |
---|---|---|
Curie Temperature | 310~380 | ℃ |
Relative Recoil Permeability | 1.02~1.05 | |
Reversible Temperature Coefficient of Br (20~100℃) | -0.09~-0.13 | %/℃ |
Reversible Temperature Coefficient of Hcj (20~100℃) | -0.4~-0.7 | %/℃ |
Density | 7.50~7.70 | g/cm3 |
Vickers Hardness | 550~700 | |
Compressive Strength | 800 ~1050 | MPa |
Electric Resistivity | 150 | μΩ·cm |
Step | Description |
---|---|
1. Mixing | Mix the ingredients |
2. Melting | Dissolve the mixture at high temperature and prepare an alloy |
3. Fine pulverization | Turn the alloy into fine powder |
4. Molding in a magnetic field | Apply a magnetic field while pressing the powder to align magnetization directions |
5. Sintering and heat treatment | Sinter at about 1,100℃, then heat treat at about 600℃ to enhance magnetic characteristics |
6. Processing | Finish the magnet base material into the product shape |
7. Surface treatment | Apply rustproof surface treatment |
8. Magnetization | Apply a magnetic field to give the magnet its final magnetism |