Roller-type speed reduction mechanism with lateral output
11434978 · 2022-09-06
Inventors
Cpc classification
F16H1/32
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H57/021
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H57/029
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H2001/325
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H25/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F16H1/32
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A speed reduction mechanism with radial output is disclosed. The roller reduction mechanism includes a speed reducer and an output shaft structure. The speed reducer has an input side and an output side. The output shaft structure is fastened at the output side of the speed reducer and is driven by the speed reducer to rotate. The output shaft structure is combined with the speed reducer and a first bearing and a second bearing with tapered shapes respectively is sleeved at a pivot shaft of the output shaft structure, so that the speed reducer may bear a larger axial force and the first and second bearings with tapered shapes respectively may increase a lateral force of the output shaft structure.
Claims
1. A speed reduction mechanism, comprising: a speed reducer having an input side and an output side; and an output shaft structure secured to the output side of the speed reducer and driven by the speed reducer to rotate; wherein the output shaft structure includes a disc and a pivot shaft; and wherein the disc is combined with the output side of the speed reducer, and the pivot shaft extends from a center of the disc toward a direction which is distant from the speed reducer; further comprising a first bearing and a second bearing wherein the first bearing is sleeved at one end of the pivot shaft adjacent to the disc, and the second bearing is sleeved at the other end of the pivot shaft distant from the disc; wherein a longitudinal cross section profile of the first bearing is tapered and a longitudinal cross section profile of the second bearing is tapered; wherein the output shaft structure includes a threaded shaft and a gear shaft; and wherein the threaded shaft is connected to one end of the pivot shaft distant from the disc, and the gear shaft is connected to one end of the threaded shaft distant from the pivot shaft; further comprising a fixed inner screw ring fastened and screwed to the threaded shaft; further comprising an outer cap covering at outside of the output shaft structure and secured to an outer cylinder of the speed reducer; wherein the gear shaft passes through the outer cap; wherein the output shaft structure includes a first C-ring, a second C-ring, and a sealing ring; and wherein the sealing ring is sleeved at outside of the fixed inner screw ring, the first C-ring and the second C-ring are sleeved at outside of the fixed inner screw ring, the first C-ring is attached to one side of the fixed inner screw ring adjacent to the second bearing, the second C-ring is attached to one side of the fixed inner screw ring distant from the second bearing, and the first C-ring, the second C-ring, and the sealing ring are surrounded by the second bearing, the outer cap, and the fixed inner screw ring.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) All the objects, advantages, and novel features of the invention will become more apparent from the following detailed descriptions when taken in conjunction with the accompanying drawings.
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DESCRIPTION OF THE PREFERRED EMBODIMENT
(9) Referring now to the drawings where like characteristics and features among the various figures are denoted by like reference characters.
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(11) The roller-type speed reducer 200 at least includes an outer cylinder 210, a first stop ring 220, a second stop ring 230, a plurality of rollers 240 and an eccentric cam 250. A plurality of third grooves 211 is arranged at an inner sidewall of the outer cylinder 210 and angularly spaced apart from each other. The first stop ring 220 and the second stop ring 230 are both arranged in the outer cylinder 210. A plurality of first grooves 221 is arranged at an outer peripheral of the first stop ring 220 and angularly spaced apart from each other. A plurality of second grooves 231 is arranged at an outer peripheral of the second stop ring 230 and angularly spaced apart from each other. The spaces defined by the first grooves 221, the second grooves 23 and the third grooves 211 are respectively provided to rollablly arrange.
(12) The eccentric cam 250 passes through the first stop ring 220 and the second stop ring 230. The eccentric cam 250 has a first eccentric shaft portion 251 and a second eccentric shaft portion 252 arranged eccentrically to the first eccentric shaft portion 251. The first is eccentric shaft portion 251 is arranged corresponding to the first stop ring 220, and the second eccentric shaft portion 252 is arranged corresponding to the second stop ring 230. Therefore, when the eccentric cam 250 rotates, it may drive the first stop ring 220 and the second stop ring 230 respectively to rotate because of the eccentric rotation of the first eccentric shaft portion 251 and the second eccentric shaft portion 252 eccentrically arranged each other and the arrangement of the rollers 240. In addition, a plurality of linking shafts 260 may pass through the first stop ring 220 and the second stop ring 230. The linking shafts 260 may be rotated with the rotation of the first stop ring 220 and the second stop ring 230.
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(14) Please refer to
(15) The pivot shaft 320 extends from a center of the disc 310 toward a direction which is distant from the roller-type speed reducer 200. In some embodiments, the output shaft structure 300 further includes a threaded shaft 330 and a gear shaft 340. The threaded shaft 330 is connected to one end of the pivot shaft 320 distant from the disc 310, and the gear shaft 340 is connected to one end of the threaded shaft 330 distant form the pivot shaft 320.
(16) In some embodiments, the roller-type speed reduction mechanism 100 further includes a first bearing 400 and a second bearing 500. The first bearing 400 is tightly sleeved at one end of the pivot shaft 320 adjacent to the disc 310, and the second bearing 500 is tightly sleeved at one end of the pivot shaft 320 distant from the disc 310. The first bearing 400 and the second bearing 500 are spaced apart from each other.
(17) Preferably, shown as
(18) Please refer to
(19) Please refer to
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(21) In conclusions, the output shaft structure 300 is combined with the roller-type speed reducer 200 (i.e. the aforementioned “outward-rotating full-roller transmission structure”) and the first bearing 400 and the second bearing 500 with tapered shapes respectively is sleeved at the pivot shaft 320 of the output shaft structure 300, so that the roller-type speed reduction mechanism 100 is may bear a greater axial force and the first and second bearings 400, 500 with tapered shapes respectively may increase a lateral force of the output shaft structure 200 to make the output torque, high input speed, and the overall strength be sufficient under the condition of frequent forward and reverse rotation, and further to meet the standard specification of the speed reducer of the car shock absorber. For example, the axial force of the standard specification is between about 4500N to about 5000N, and the lateral force of the standard specification is between about 9500N to about 10000N.
(22) The foregoing descriptions are merely the exemplified embodiments of the present invention, where the scope of the claim of the present invention is not intended to be limited by the embodiments. Any equivalent embodiments or modifications without departing from the spirit and scope of the present invention are therefore intended to be embraced.
(23) The disclosed structure of the invention has not appeared in the prior art and features efficacy better than the prior structure which is construed to be a novel and creative invention, thereby filing the present application herein subject to the patent law.