Sliding member
In a pair of sliding components having respective sliding faces (S) which slide relative to each other, at least one of the sliding faces (S) is provided with a plurality of dimples ( 10 ), and the dimples ( 10 ) include a concave part ( 15 ), and a peripheral edge part ( 11 ) which is located at the outer peripheral part of the concave part ( 15 ) and is shallower than the concave part ( 15 ). Accordingly, the performance of the plurality of dimples formed on the sliding face can be sufficiently exploited, thereby improving their lubrication performance and sealing performance.
1. A pair of sliding components having respective sliding faces which slide relative to each other, characterized in that:
at least one of the sliding faces is provided with a plurality of dimples; and
each dimple is constituted by a cone-shaped concave part and a peripheral edge part, wherein
the cone-shaped concave part is constituted by:
a bottom having a given depth at a center of the cone-shaped concave part with reference to the at least one of the sliding faces, and
a cone-shaped wall part inclined at a substantially constant gradient from a vicinity of the bottom toward the at least one of the sliding faces in a manner gradually increasing an opening diameter toward the at least one of the sliding faces, and
the peripheral edge part is constituted by:
an outer peripheral edge part where the peripheral edge part connects the at least one of the sliding faces, wherein the outer peripheral edge part is disposed outside the opening diameter of the cone-shaped wall part on a plane of the at least one of the sliding faces, wherein the opening diameter is defined if the cone-shaped wall part extends to the plane and intersects the plane,
a peripheral wall provided, at the outer peripheral edge part, substantially perpendicular to the at least one of the sliding faces, and
a bottom wall connecting the peripheral wall and the cone-shaped wall part and having a substantially constant depth with reference to the at least one of the sliding faces.
2. The sliding component according to claim 1 , characterized in that the peripheral wall of the peripheral edge part is constituted by a Rayleigh step or a reverse Rayleigh step.
3. The sliding component according to claim 2 , characterized in that when the depth of the concave part is G and the opening diameter of the concave part in the sliding face is D, a ratio G/D of the depth and the opening diameter is 0.25 to 1.
4. The sliding component according to claim 1 , characterized in that when the depth of the concave part is G and the opening diameter of the concave part in the sliding face is D, a ratio G/D of the depth and the opening diameter is 0.25 to 1.
5. The sliding component according to claim 4 , characterized in that when the width of the peripheral edge part is E, a ratio E/D of the width and the opening diameter is 0.15 to 0.5.
6. The sliding component according to claim 5 , characterized in that the width E of the peripheral edge part is 5 μm to 20 μm.
7. The sliding component according to claim 6 , characterized in that the depth G of the concave part is 5 μm to 50 μm.
8. The sliding component according to claim 5 , characterized in that the opening diameter D is 10 μm to 60 μm, the width E is 5 μm to 20 μm, and the depth G is 5 μm to 50 μm.
9. The sliding component according to claim 5 , characterized in that the depth G of the concave part is 5 μm to 50 μm.
10. The sliding component according to claim 4 , characterized in that the depth G of the concave part is 5 μm to 50 μm.
11. The sliding component according to claim 10 , characterized in that the width E of the peripheral edge part is 5 μm to 20 μm.
12. The sliding component according to claim 1 , wherein an inner peripheral edge part is provided where the bottom wall part and the cone-shaped wall part meet, wherein the inner peripheral edge part is constituted by a curved surface as viewed in a cross section.
13. The sliding component according to claim 1 , wherein the depth of the bottom wall of the peripheral edge part is 1 μm to 5 μm.