Bending meshing type gear device
A bending meshing type gear device includes a wave generator, a bending gear that is bent and deformed by the wave generator, and a meshing gear that meshes with the bending gear, in which the meshing gear is formed of a first resin having a glass transition point lower than about 140° C., the bending gear is formed of a first high thermal conductivity material having higher thermal conductivity than the first resin, and the wave generator is formed of a second high thermal conductivity material having higher thermal conductivity than the first high thermal conductivity material.
1 . A gear device comprising:
a wave generator;
a bending gear that is bent and deformed by the wave generator;
a meshing gear that meshes with the bending gear, and
a wave generator bearing that is disposed between the wave generator and the bending gear,
wherein the wave generator is provided separately from rolling elements of the wave generator bearing,
wherein the meshing gear is formed of a first resin having a glass transition point lower than about 140° C.,
the bending gear is formed of a first high thermal conductivity material having higher thermal conductivity than the first resin, and
the wave generator is formed of a second high thermal conductivity material having higher thermal conductivity than the first high thermal conductivity material; and
wherein the first high thermal conductivity material has a higher Young's modulus than the second high thermal conductivity material.
2 . The gear device according to claim 1 ,
wherein the first high thermal conductivity material is an iron-based material, and
the second high thermal conductivity material is an aluminum-based material.
3 . The gear device according to claim 1 , further comprising:
a wave generator shaft including the wave generator, and shaft portions provided on both sides of the wave generator in an axial direction.
4 . The gear device according to claim 3 , wherein a hollow portion that passes through a center portion of the wave generator shaft in the axial direction of the wave generator is formed in the center portion of the wave generator shaft.
5 . The gear device according to claim 3 , wherein a shape of an opposite periphery portion of the wave generator that is opposite to the bending gear in a radial direction is substantially an ellipse, and a shape of an opposite periphery portion of the shaft portion is substantially a circle, in a cross section of the wave generator perpendicular to the axial direction.
6 . The gear device according to claim 1 , wherein the first resin is semi-aromatic polyamide.
7 . A gear device comprising:
a wave generator;
a bending gear that is bent and deformed by the wave generator;
a meshing gear that meshes with the bending gear, and
a wave generator bearing that is disposed between the wave generator and the bending gear,
wherein the wave generator is provided separately from rolling elements of the wave generator bearing,
wherein the meshing gear is formed of a first resin having a glass transition point lower than about 140° C.,
the bending gear is formed of a first high thermal conductivity material having higher thermal conductivity than the first resin, and
the wave generator is formed of a second high thermal conductivity material having higher thermal conductivity than the first high thermal conductivity material,
wherein the wave generator bearing is formed of a third high thermal conductivity material having higher thermal conductivity than the first resin, and
the second high thermal conductivity material has higher thermal conductivity than the third high thermal conductivity material.
8 . The device according to claim 7 , wherein the wave generator bearing includes a plurality of rolling elements, and a retainer that holds positions of the plurality of rolling elements.
9 . The device according to claim 8 , wherein the wave generator bearing further includes a dedicated outer ring on which the rolling element rolls.
10 . The gear device according to claim 9 , wherein the rolling element, the retainer, and the outer ring are formed of the third high thermal conductivity materials having different thermal conductivity from each other.
11 . A gear device comprising:
a wave generator;
a bending gear that is bent and deformed by the wave generator;
a meshing gear that meshes with the bending gear, and
a wave generator bearing that is disposed between the wave generator and the bending gear,
wherein the wave generator is provided separately from rolling elements of the wave generator bearing,
wherein the meshing gear is formed of a first resin having a glass transition point lower than about 140° C.
the bending gear is formed of a first high thermal conductivity material having higher thermal conductivity than the first resin, and
the wave generator is formed of a second high thermal conductivity material having higher thermal conductivity than the first high thermal conductivity material;
the gear device further comprising:
a connected member that is connected to the meshing gear,
wherein the connected member is formed of a second resin having a lower glass transition point than the first resin.
12 . A gear device comprising:
a wave generator;
a bending gear that is bent and deformed by the wave generator;
a meshing gear that meshes with the bending gear, and
a wave generator bearing that is disposed between the wave generator and the bending gear,
wherein the wave generator is provided separately from rolling elements of the wave generator bearing,
wherein the meshing gear is formed of a first resin having a glass transition point lower than about 140° C.
the bending gear is formed of a first high thermal conductivity material having higher thermal conductivity than the first resin,
the wave generator is formed of a second high thermal conductivity material having higher thermal conductivity than the first high thermal conductivity material; and
wherein the first resin has a glass transition point higher than or equal to 100° C.
13 . A gear device comprising:
a wave generator;
a bending gear that is bent and deformed by the wave generator;
a meshing gear that meshes with the bending gear, and
a wave generator bearing that is disposed between the wave generator and the bending gear,
wherein the wave generator is provided separately from rolling elements of the wave generator bearing,
wherein the meshing gear is formed of a first resin having a glass transition point lower than about 140° C.,
the bending gear is formed of a first high thermal conductivity material having higher thermal conductivity than the first resin,
the wave generator is formed of a second high thermal conductivity material having higher thermal conductivity than the first high thermal conductivity material,
further comprising:
a regulating member that regulates a movement of the bending gear in an axial direction,
wherein the regulating member is formed of a fourth high thermal conductivity material having higher thermal conductivity than the first high thermal conductivity material.
14 . The gear device according to claim 13 , wherein the regulating member comes into contact with a bearing disposed on an opposite side to the bending gear in the axial direction with respect to the regulating member.