Wave gear device and flexible internally toothed gear
Abstract
In a wave gear device, an annular rigid externally toothed gear is disposed on the inner side of a cup-shaped flexible internally toothed gear. An internal-tooth-formation portion of the flexible internally toothed gear and a pushed portion pushed by a wave generator and flexed ellipsoidally are formed in different positions along the center axis line. The wave generator is disposed on the inner side of the flexible internally toothed gear, the pushed cylindrical portion is pushed from the inner side to the outside along the radial direction thereof by the wave generator, whereby the pushed cylindrical portion is flexed ellipsodially. As the outside diameter dimension of the wave gear device is determined by that of the flexible internally toothed gear, a wave gear device having a small outside diameter dimension can be obtained.
Claims
exact text as granted — not AI-modified1 . A wave gear device comprising:
a flexible internally toothed gear; a rigid externally toothed gear disposed on an inner side of the flexible internally toothed gear, the rigid externally toothed gear functioning as a rotation output member; and a wave generator for flexing the flexible internally toothed gear into an ellipsoidal shape to mesh partially with the rigid externally toothed gear, and for moving meshing positions of the two gears in a circumferential direction, wherein the flexible internally toothed gear is a silk hat shaped flexible internally toothed gear which has a cylindrical barrel part capable of flexing in a radial direction thereof, one end of the cylindrical barrel part being an open edge, and a diaphragm extending outward in the radial direction from the other end of the cylindrical barrel part, the cylindrical barrel part has an outer peripheral surface with no external teeth and an inner peripheral surface including an internal-tooth-formation portion and a pushed portion, the internal-tooth-formation portion where the internal teeth are formed, and the pushed portion pushed by the wave generator so as to flex the internal-tooth-formation portion into an ellipsoidal shape, the internal-tooth-formation portion and the pushed portion are formed in different positions of the inner peripheral surface of the cylindrical barrel part when viewed along a direction of a center axis line of the flexible internally toothed gear, and the wave generator is disposed on an inner side of the cylindrical barrel part, and pushes the pushed portion in a radial, direction thereof from an inner side toward an outer side to flex it elliptically, wherein no structural components of the wave gear device are located on a radially outward side of the cylindrical barrel part of the flexible internally toothed gear.
2 . The wave gear device according to claim 1 , wherein
the internal-tooth-formation portion and the pushed portion are formed in positions adjacent to each other in the direction of the center axis line.
3 . The wave gear device according to claim 2 , wherein
the pushed portion is a portion having a predetermined length in the direction of the center axis line from the open edge of the cylindrical barrel part.
4 . The wave gear device according to claim 1 , wherein
the wave generator comprises a rigid member having an outer peripheral surface of an ellipsoidal contour, and a wave bearing attached on the outer peripheral surface in an ellipsoidally flexed state, and the pushed portion of the cylindrical barrel part is flexed ellipsoidally by the outer peripheral surface of an outer ring of the wave bearing.
5 . A silk hat shaped flexible internally toothed gear of the wave gear device according to claim 1 .
6 . The flexible internally toothed gear of the wave gear device according to claim 5 , wherein
the internal-tooth-formation portion and the pushed portion are formed in positions adjacent to each other along the center axis line.
7 . The flexible internally toothed gear of the wave gear device according to claim 6 , wherein
the pushed portion is a portion having a predetermined length in the direction of the center axis line from the open edge of the cylindrical barrel part.Join the waitlist — get patent alerts
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