IP Library Granted Patent US 12,398,794
Granted Patent B2
US 12,398,794 · App. 18/135,082 · Granted Aug 26, 2025

Harmonic gear device and actuator

Inventors: Gang Wang (Foshan, CN); Wenjie Lin (Foshan, CN); Kiyoji Minegishi (Foshan, CN); Tsuyoshi Isaji (Foshan, CN); Ziming Guo (Foshan, CN)
Assignees: Midea Group Co., Ltd.; Guangdong Jiya Precision Machinery Technology Co., Ltd.; GD Midea Air-Conditioning Equipment Co, . Ltd.; Guangdong Midea Electric Co., Ltd.
F16H49/001F16H2049/003F16H55/0833
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Quick Facts
Patent No.
US 12,398,794
App. No.
18/135,082
Granted
Aug 26, 2025
Kind
B2
Abstract

A harmonic gear device includes a rigid internal gear, a flexible external gear and a wave generator. The rigid internal gear is an annular component having internal teeth. The flexible external gear is an annular component, which has external teeth and is configured on an inner side of the rigid internal gear. The wave generator is configured on an inner side of the flexible external gear, and deflects the flexible external gear. The harmonic gear device deforms the flexible external gear along with the rotation of the wave generator taking a rotation axis as the center, such that some of the external teeth mesh with some of the internal teeth. The flexible external gear rotates relative to the rigid internal gear in accordance with the difference between the numbers of teeth of the flexible external gear and the rigid internal gear.

Claims (23)

1. A harmonic gear device, comprising:

a rigid internal gear with an annular shape, having a first number of internal teeth;

a flexible external gear with an annular shape, having a second number of external teeth and arranged on an inner side of the rigid internal gear; and

a wave generator, arranged on an inner side of the flexible external gear and configured to deflect the flexible external gear, wherein the harmonic gear device is configured to deform the flexible external gear by a rotation of the wave generator along a rotation axis, such that a portion of the external teeth is meshed with a portion of the internal teeth, and the flexible external gear is configured to rotate relative to the rigid internal gear in accordance with a difference between the first number of internal teeth and the second number of external teeth, and

wherein an internal tooth of the first number of internal teeth has a tooth-direction trimming portion at an end portion on at least one side along a tooth direction of the internal tooth, wherein an inner peripheral surface of the flexible external gear has a tapered surface at a position opposite to an outer peripheral surface of the wave generator, and the tapered surface increases a gap between the tapered surface and the outer peripheral surface of the wave generator in a direction along the rotation axis, and a lubricant is maintained in the gap between the tapered surface and the outer peripheral surface of the wave generator, wherein the tapered surface is a tapered surface of an external tooth of the second number of external teeth, and the external tooth protrudes from the internal tooth.

2. The harmonic gear device of claim 1 , wherein the tooth-direction trimming portion includes a first trimming portion of the internal tooth, and the external tooth of the second number of external teeth includes a second trimming portion which is a tooth-direction trimming portion different from the first trimming portion.

3. The harmonic gear device of claim 2 , wherein a trimming amount of the second trimming portion is less than that of the first trimming portion.

4. The harmonic gear device of claim 2 , wherein the first trimming portion and the second trimming portion are of the same type.

5. The harmonic gear device of claim 1 , wherein an inclination angle of the tapered surface with respect to the rotation axis is less than 5 degrees.

6. The harmonic gear device of claim 1 , wherein the tooth-direction trimming portion comprises an inclined surface inclined with respect to the tooth direction, in at least one of a tooth bottom, a tooth crest, or an end surface in a tooth-thickness direction of the internal tooth.

7. The harmonic gear device of claim 6 , wherein the tooth-direction trimming portion comprises the inclined surface at least at the tooth bottom.

8. The harmonic gear device of claim 1 , wherein the flexible external gear has a cylindrical shape with an opened surface at a side along the tooth direction, the tooth-direction trimming portion is arranged at an end portion of at least the opened surface at the side along the tooth direction of the internal tooth.

9. An actuator, comprising:

the harmonic gear device of claim 1 ;

a driving source configured to rotate the wave generator; and

an output portion configured to provide a rotation force of one of the rigid internal gear or the flexible external gear out as an output.

10. The actuator of claim 9 , wherein the tooth-direction trimming portion includes a first trimming portion of the internal tooth, and the external tooth of the second number of external teeth includes a second trimming portion which is a tooth-direction trimming portion different from the first trimming portion.

11. The actuator of claim 10 , wherein a trimming amount of the second trimming portion is less than that of the first trimming portion.

12. The actuator of claim 10 , wherein the first trimming portion and the second trimming portion are of the same type.

13. The actuator of claim 9 , wherein an inclination angle of the tapered surface with respect to the rotation axis is less than 5 degrees.

14. The actuator of claim 9 , wherein the tooth-direction trimming portion comprises an inclined surface inclined with respect to the tooth direction, in at least one of a tooth bottom, a tooth crest, or an end surface in a tooth-thickness direction of the internal tooth.

15. The actuator of claim 14 , wherein the tooth-direction trimming portion comprises the inclined surface at least at the tooth bottom.

16. The actuator of claim 9 , wherein the flexible external gear has a cylindrical shape with an opened surface at a side along the tooth direction, the tooth-direction trimming portion is arranged at an end portion of at least the opened surface side along the tooth direction of the internal tooth.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 20, 2026
From: GUANGDONG MIDEA ELECTRIC CO., LTD.
To: KUKA ROBOTICS AUTOMATION (GUANGDONG) CO., LTD.
Reel/Frame 074714/0646 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 19, 2024
From: MIDEA GROUP CO., LTD; GUANGDONG JIYA PRECISION MACHINERY TECHNOLOGY CO., LTD.; GD MIDEA AIR-CONDITIONING EQUIPMENT CO., LTD.
To: MIDEA GROUP CO., LTD; GUANGDONG JIYA PRECISION MACHINERY TECHNOLOGY CO., LTD.; GD MIDEA AIR-CONDITIONING EQUIPMENT CO., LTD.; GUANGDONG MIDEA ELECTRIC CO., LTD.
Reel/Frame 066185/0200 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 10, 2023
From: WANG, GANG; LIN, WENJIE; MINEGISHI, KIYOJI; ISAJI, TSUYOSHI; GUO, ZIMING
To: MIDEA GROUP CO., LTD.; GUANGDONG JIYA PRECISION MACHINERY TECHNOLOGY CO., LTD.; GD MIDEA AIR-CONDITIONING EQUIPMENT CO., LTD.
Reel/Frame 063606/0793 →
Priority Claims (1)
JP 2020-174376 · Oct 16, 2020 · national
Continuity (2)
Continuation PCTCN2021083685 · Mar 29, 2021
Related Publication 20230250865A1 · Aug 10, 2023
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