Production method for sintered bearing member, fluid dynamic pressure bearing device, and spindle motor
View Patent ↗A production method for sintered bearing member comprises: compacting a metal powder into a green compact, sintering the green compact into a sintered compact; impregnating a resin solvent into the sintered compact, and removing the resin solvent adhering to a surface of the sintered compact, thereby exposing a matrix as sintered on a surface of the sintered compact. Pores existing in portions other than the surface are sealed with the resin.
1. A production method for a sintered bearing member, the method comprising:
compacting a metal powder into a green compact;
sintering the green compact into a sintered compact;
impregnating a water soluble resin solvent into the sintered compact; and
removing the resin solvent adhering to a surface of the sintered compact, thereby exposing a matrix as sintered on a surface of the sintered compact;
wherein pores existing in portions other than the surface of the sintered compact are sealed with the resin.
2. The production method for a sintered bearing member according to claim 1 , wherein the surface of the sintered compact is washed by water and the resin solvent adhering to the surface is removed before the resin is hardened.
3. The production method for a sintered bearing member according to claim 2 , wherein the resin solvent existing in an area from the surface of the sintered compact to a depth of approximately 0.1 to 0.2 mm is removed by the washing.
4. The production method for a sintered bearing member according to claim 1 , wherein the sintered compact is heated at a temperature of 80 to 90° C., thereby hardening the resin in the pores after removing the resin solvent adhering to the surface of the sintered compact.
5. The production method for a sintered bearing member according to claim 4 , wherein dynamic pressure grooves are formed after the resin is hardened.
6. The production method for a sintered bearing member according to claim 1 , wherein dynamic pressure grooves are formed before the water soluble resin solvent is impregnated into the sintered compact.