Short-axle-distance large-speed-ratio gear set structure
11578785 ยท 2023-02-14
Assignee
Inventors
- Li-Ho Yao (Taipei, TW)
- Norman Lien (Taipei, TW)
- Pei-Sheng Hsieh (Taipei, TW)
- Chi-Chen Tien (Taipei, TW)
- Pi-Jen Hsieh (Taipei, TW)
Cpc classification
F16H1/28
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H57/0025
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H57/0037
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H2057/0216
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C3/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H2057/02086
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H57/021
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H57/082
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H2001/2872
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H57/023
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H1/46
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F16H1/46
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H57/023
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A structure includes a transmission axle rotatably mounted at a center of a housing. The transmission axle includes a sun gear mounted thereon. An internally-toothed ring track is fixed to an inner circumference of the housing. A planetary gear set is arranged between the sun gear and the internally-toothed ring track. The planetary gear set includes a plurality of stepped planetary gears arranged around the sun gear for self-spinning and orbiting around the sun gear. Each stepped planetary gear includes a first toothed portion meshing with both the sun gear and the internally-toothed ring track and a second toothed portion rotatable in unison with the first toothed portion. An output member is fit over the planetary gear set and includes an inner circumference formed with an internal toothed circumference meshing with the second toothed portion of each stepped planetary gear.
Claims
1. A short-axle-distance large-speed-ratio gear set structure, comprising: a housing; a transmission axle, which is rotatably mounted in the housing, the transmission axle being provided with a sun gear; an internally-toothed ring track, which is fixed to the housing; a planetary gear set, which comprises a first carrier frame and a second carrier frame that are opposite to each other, a plurality of stepped planetary gears being rotatably arranged between the first and second carrier frames and around an outer circumference of the sun gear, each of the stepped planetary gears comprising a first toothed portion synchronously meshing with the sun gear and the internally-toothed ring track, each of the stepped planetary gears further comprising a second toothed portion that is rotatable in unison with the first toothed portion; and an output member, which has an inner circumference that is formed with an internal toothed circumference engageable with the second toothed portion of each of the stepped planetary gears, the output member having an outer circumference that is formed with a driving wheel portion for driving purposes.
2. The short-axle-distance large-speed-ratio gear set structure according to claim 1, wherein the housing comprises at least a first mounting compartment for mounting the transmission axle, the housing having a front end and a rear end that are respectively covered by a first cover and a second cover mounted thereto, two ends of the transmission axle being rotatably mounted, as being each supported by a bearing, between the housing and the first cover.
3. The short-axle-distance large-speed-ratio gear set structure according to claim 1, wherein one end of the transmission axle is formed with a mounting section and a coupling section, and the sun gear is formed, in a center thereof, with a coupling hole that is fit over the mounting section, a coupling block being inserted into and disposed in the coupling hole to engage with the coupling section of the transmission axle, a fastening member penetrating through and pressing on the coupling block to then fasten to the transmission axle.
4. The short-axle-distance large-speed-ratio gear set structure according to claim 1, wherein the second carrier frame of the planetary gear set is provided, at a center thereof, with an axle tube for mounting the output member, the axle tube rotatably supporting the output member by means of a third bearing.
5. The short-axle-distance large-speed-ratio gear set structure according to claim 4, wherein the axle tube of the second carrier frame is provided, at a center thereof, with a stepped mounting hole that receives a mounting axle to penetrate therein, one end of the mounting axle being rotatably mounted on an opposite end of the sun gear, wherein the mounting axle is formed with a through hole for receiving a hand tool to insert and operate therein.
6. The short-axle-distance large-speed-ratio gear set structure according to claim 1, wherein surfaces of the first and second carrier frames of the planetary gear set that face each other are respectively provided with a plurality of counterbored-hole pillars, which are set in abutting engagement with each other and respectively receive threaded fastening elements to penetrate therethrough for mutually fastening to each other, so as to have the first and second carrier frames to attach to each other as a unity.
7. The short-axle-distance large-speed-ratio gear set structure according to claim 1, wherein a plurality of axle bars are arranged between the first and second carrier frames for mounting the stepped planetary gears, and each of the axle bars rotatably supports a corresponding one of the stepped planetary gears by means of at least one bearing.
8. The short-axle-distance large-speed-ratio gear set structure according to claim 1, wherein the driving wheel portion on the outer circumference of the output member includes an externally toothed wheel or a frictional wheel.
9. The short-axle-distance large-speed-ratio gear set structure according to claim 1, wherein the first and second carrier frames of the planetary gear set are rotatably mounted, by means of a first bearing and a second bearing arranged at centers thereof, to two ends of the sun gear, such that the sun gear, the planetary gear set, and the output member are assembled together as a modularized coaxial gear set.
10. The short-axle-distance large-speed-ratio gear set structure according to claim 2, wherein the first and second carrier frames of the planetary gear set are rotatably mounted, by means of a first bearing and a second bearing arranged at centers thereof, to two ends of the sun gear, such that the sun gear, the planetary gear set, and the output member are assembled together as a modularized coaxial gear set.
11. The short-axle-distance large-speed-ratio gear set structure according to claim 3, wherein the first and second carrier frames of the planetary gear set are rotatably mounted, by means of a first bearing and a second bearing arranged at centers thereof, to two ends of the sun gear, such that the sun gear, the planetary gear set, and the output member are assembled together as a modularized coaxial gear set.
12. The short-axle-distance large-speed-ratio gear set structure according to claim 4, wherein the first and second carrier frames of the planetary gear set are rotatably mounted, by means of a first bearing and a second bearing arranged at centers thereof, to two ends of the sun gear, such that the sun gear, the planetary gear set, and the output member are assembled together as a modularized coaxial gear set.
13. The short-axle-distance large-speed-ratio gear set structure according to claim 5, wherein the first and second carrier frames of the planetary gear set are rotatably mounted, by means of a first bearing and a second bearing arranged at centers thereof, to two ends of the sun gear, such that the sun gear, the planetary gear set, and the output member are assembled together as a modularized coaxial gear set.
14. The short-axle-distance large-speed-ratio gear set structure according to claim 6, wherein the first and second carrier frames of the planetary gear set are rotatably mounted, by means of a first bearing and a second bearing arranged at centers thereof, to two ends of the sun gear, such that the sun gear, the planetary gear set, and the output member are assembled together as a modularized coaxial gear set.
15. The short-axle-distance large-speed-ratio gear set structure according to claim 7, wherein the first and second carrier frames of the planetary gear set are rotatably mounted, by means of a first bearing and a second bearing arranged at centers thereof, to two ends of the sun gear, such that the sun gear, the planetary gear set, and the output member are assembled together as a modularized coaxial gear set.
16. The short-axle-distance large-speed-ratio gear set structure according to claim 8, wherein the first and second carrier frames of the planetary gear set are rotatably mounted, by means of a first bearing and a second bearing arranged at centers thereof, to two ends of the sun gear, such that the sun gear, the planetary gear set, and the output member are assembled together as a modularized coaxial gear set.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENT
(7) A structure of the present invention, as shown in
(8) For a detailed structure of a preferred embodiment according to the present invention, reference being had to
(9) For a detailed structure of the coaxial gear set 20, reference being had to
(10) As such, the first toothed portions 331 of the stepped planetary gears 33 of the planetary gear set 30 are set in synchronous meshing engagement with the internally-toothed ring track 18, while the second toothed portions 332 that are integrally formed therewith are in direct meshing engagement with the internal toothed circumference 42 of the output member 40, so as to form a short-axle-distance large-speed-ratio gear set structure.
(11) An actual operation of the present invention will be described. As shown in
(12) Based on the design and description provided above, the present invention provides that the coaxial gear set 20 is mounted on the transmission axle 15 of the housing 10, and the first toothed portion 331 of each of the stepped planetary gears 33 of the planetary gear set 30 are synchronously in meshing engagement with both the sun gear 21 and the internally-toothed ring track 18, and the second toothed portion 332 of each of the stepped planetary gears 33 is individually set in meshing engagement with the internal toothed circumference 42 of the output member 40, so as to achieve dual inputs and single output, and thus forming a short-axle-distance structure, allowing for size reduction. Further, the planetary gear set 30, when driving the output member 40, can rotate backward in a reversed direction to achieve a large speed ratio to further enhance the effect of speed reduction, and also to reduce interference, allowing the entire operation to be smoother and also helping reduce vibration and noise, thereby making the entire assembly structure of the reduction mechanism more secured and enhancing degree of meshing engagement to extend the service life thereof.