Lubricant leakage control mechanism and gear mechanism
A lubricant leakage control mechanism of an embodiment includes: an output block body disposed on at least one of two opposing surfaces of an annular gear in the thickness direction adjacent to external teeth of the annular gear in the thickness direction, the block body having an outer circumferential surface around the entire circumference of the gear; a cover provided over the entire circumference so as to face the external teeth in a radial direction, the cover covering the external teeth; and a felt sheet sealing between the output block body and the cover.
1 . A lubricant leakage control mechanism comprising:
a block body disposed adjacent to teeth of a gear in a thickness direction of the gear and, the block body having a circumferential surface around its entire circumference;
a cover provided around an entire circumference of the gear so as to face the teeth in a radial direction of the gear, the cover covering the teeth; and
a sealing member for preventing leakage of lubricant from between the block body and the cover,
wherein the block body is disposed on at least one of two opposing surfaces of the gear in the thickness direction,
wherein the sealing member includes a porous material that is compressible and deformable,
wherein the block body has a block body overhang projecting from the circumferential surface toward the cover, and
wherein the sealing member is disposed between the block body overhang and the cover.
2 . The lubricant leakage control mechanism of claim 1 , wherein the cover has a cover overhang projecting from the cover toward the gear teeth, and
wherein the sealing member is disposed between the cover overhang and the block body.
3 . The lubricant leakage control mechanism of claim 1 , wherein the cover has a cover overhang projecting from the cover toward the teeth, and
wherein the sealing member is held in the thickness direction by the cover overhang and the block body overhang.
4 . The lubricant leakage control mechanism of claim 1 , wherein the sealing member is in surface contact with the block body and the cover.
5 . The lubricant leakage control mechanism of claim 4 , further comprising a pressing portion provided on at least one of the block body or the cover, the pressing portion locally pressing the sealing member against the block body or the cover.
6 . The lubricant leakage control mechanism of claim 5 , wherein the pressing portion is formed continuously or discontinuously in the circumferential direction of the gear.
7 . The lubricant leakage control mechanism of claim 6 , wherein the pressing portion presses the sealing member in the radial direction of the gear or in the thickness direction of the gear.
8 . The lubricant leakage control mechanism of claim 7 , wherein the pressing portion is formed to be convex or concave in the direction of pressing the sealing member.
9 . The lubricant leakage control mechanism of claim 8 , wherein the pressing portion is formed to be convex or concave in the direction of pressing the sealing member, and a top of the pressing portion is rounded.
10 . The lubricant leakage control mechanism of claim 7 , wherein the pressing portion is formed so that a distance between the opposing surfaces of the block body and the cover is decreased.
11 . A lubricant leakage control mechanism comprising:
a block body disposed adjacent to teeth of a gear in a thickness direction of the gear and, the block body having a circumferential surface around its entire circumference;
a cover provided around an entire circumference of the gear so as to face the teeth in a radial direction of the gear, the cover covering the teeth; and
a sealing member for preventing leakage of lubricant from between the block body and the cover,
wherein the block body is disposed on at least one of two opposing surfaces of the gear in the thickness direction,
wherein the sealing member includes a porous material that is compressible and deformable,
wherein the cover includes:
a cover overhang projecting from the cover toward the teeth; and
an auxiliary cover provided at a position more distant from the gear in the thickness direction than the cover overhang, and
wherein the sealing member is held in the thickness direction by the cover overhang and the auxiliary cover.
12 . The lubricant leakage control mechanism of claim 11 , wherein the sealing member is disposed between the cover overhang and the circumferential surface of the block body.