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LAP100.29P1 is atomised based phosphorus alloyed powders Which contains 0.45%- 0.65% phosphorous based on LAP100.29, which gives the powder very high compressibility. Sintered parts made from LAP100.29P1 exhibit high strength in combination with very high ductility. An addition of graphite and/or copper will give still higher strength with retained or even improved dimensional stability. LAP100.29P1 is also suitable for components requiring good soft magnetic properties.
Chemical Properties(%) | Unit | Specification | |
Min | Max | ||
C | % | 0.05 | |
Si | % | 0.05 | |
Mn | % | 0.15 | |
P | % | 0.45 | 0.65 |
S | % | 0.015 | |
HL | % | 0.20 | |
Physical Properties | |||
Apparent density | g/cm3 | 3.00 | 3.30 |
Flow rate | s/50g |
| 28.00 |
Green density 600Mpa | g/cm3 | 7.06 |
|
Particle size distribution(%) | |||
180-212um | % |
| 1 |
150-180um | % |
| 10 |
45-150um | % |
|
|
-45um | % | 15 | 30 |
Application
LAP100.29P1 is widely used for the production of high density PM structural parts and magnetic parts.
LAP100.29P1 is atomised based phosphorus alloyed powders Which contains 0.45%- 0.65% phosphorous based on LAP100.29, which gives the powder very high compressibility. Sintered parts made from LAP100.29P1 exhibit high strength in combination with very high ductility. An addition of graphite and/or copper will give still higher strength with retained or even improved dimensional stability. LAP100.29P1 is also suitable for components requiring good soft magnetic properties.
Chemical Properties(%) | Unit | Specification | |
Min | Max | ||
C | % | 0.05 | |
Si | % | 0.05 | |
Mn | % | 0.15 | |
P | % | 0.45 | 0.65 |
S | % | 0.015 | |
HL | % | 0.20 | |
Physical Properties | |||
Apparent density | g/cm3 | 3.00 | 3.30 |
Flow rate | s/50g |
| 28.00 |
Green density 600Mpa | g/cm3 | 7.06 |
|
Particle size distribution(%) | |||
180-212um | % |
| 1 |
150-180um | % |
| 10 |
45-150um | % |
|
|
-45um | % | 15 | 30 |
Application
LAP100.29P1 is widely used for the production of high density PM structural parts and magnetic parts.