Flexibly engaged continuously variable transmission gearbox
10006525 ยท 2018-06-26
Assignee
Inventors
Cpc classification
International classification
F16H9/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H9/24
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H63/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H61/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H9/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A flexibly engaged continuously variable transmission gearbox includes the following components connected sequentially in a transmission: a power input shaft conical roller, a sectional input flexible sprocket, a tooth-shaped chain, a sectional output flexible sprocket, a power output shaft conical roller. When the power input shaft conical roller rotates, it drives five sectional input flexible sprocket members that are slidably matched in five equidistant T-shaped grooves on the conical roller to rotate. The sectional input flexible sprocket drives the tooth-shaped chain engaged therewith to transmit, and thus drives the five sectional output flexible sprocket members that are slidably matched in the five equidistant T-shaped grooves on the output shaft conical roller to rotate. The five sectional output flexible sprocket members are connected to the output shaft conical roller through the five equidistant slidable T-shaped grooves.
Claims
1. A flexibly engaged continuously variable transmission gearbox comprising the following components connected sequentially: a power input shaft conical roller.fwdarw.a sectional input flexible sprocket.fwdarw.a tooth-shaped chain.fwdarw.a sectional output flexible sprocket.fwdarw.a power output shaft conical roller; wherein the power input shaft conical roller rotates, the power input shaft conical roller drives five sectional input flexible sprocket members that are slidably matched in five equidistant T-shaped grooves on the conical roller to rotate; then the sectional input flexible sprocket drives the tooth-shaped chain engaged therewith to transmit, and thus drives the five sectional output flexible sprocket members that are slidably matched in the five equidistant T-shaped grooves on the output shaft conical roller to rotate, with the five sectional output flexible sprocket members connected to the output shaft conical roller through the five equidistant slidable T-shaped grooves, thus driving the output shaft conical roller to rotate to output power; and wherein a sectional T-shaped flexible sprocket sliding track has five T-shaped grooves with an always equal groove spacing in different diameter positions on the input and output shaft conical rollers, respectively, wherein the T-shaped groove slidably fits in size with a T-shaped insert at the lower part of the T-shaped sprocket member, and the sliding direction of the T-shaped groove is determined by the diameters all over the conical roller or the engagement linear velocity.
2. The flexibly engaged continuously variable transmission gearbox according to claim 1, characterized in that: the variable transmission is achieved by engagement of the tooth-shaped chain with the sectional flexible sprocket; the sectional flexible sprocket with an equal pitch of teeth, respectively composed of five sectional T-shaped sprocket members, slides in five equidistant T-shaped grooves on input and output shaft conical rollers; the sectional flexible sprocket, by sliding in different engagement diameter positions on the conical roller, can make the engagement linear velocity of the flexible sprocket and the tooth-shaped chain become greater or less, the larger the diameter the greater the linear velocity, the smaller the diameter the less the linear velocity, so that output shaft rotational speed is changed.
3. The flexibly engaged continuously variable transmission gearbox according to claim 1, characterized in that: input and output flexible sprockets respectively are an open sprocket composed of five sectional T-shaped sprocket members; the T-shaped sprocket members are provided on their upper part with sprocket teeth having an equal pitch of teeth, also the distance among the T-shaped sprocket members, and can engage with the tooth-shaped chain for transmission; the T-shaped sprocket members are provided on their lower part with a T-shaped block that is slidable in the T-shaped groove on the input or output shaft conical roller, thus forming the sectional flexible sprocket.
4. The flexibly engaged continuously variable transmission gearbox according to claim 1, characterized in that: a sectional T-shaped flexible sprocket member anti-skid positioning mechanism is composed of two identical T-shaped plates fastened and connected oppositely by a pin, wherein a circular hole at the lower part of the T-shaped plate is put around a rotational speed adjustment nut idler wheel shared by toothed-chain input and output shafts, and two waist-shaped arc holes are put around a toothed-chain input shaft rotational speed adjustment nut idler wheel and a toothed-chain output shaft rotational speed adjustment nut idler wheel, respectively.
5. The flexibly engaged continuously variable transmission gearbox according to claim 1, characterized in that: an anti-skid tensioning positioning mechanism of the tooth-shaped chain is composed of two T-shaped toothed-chain anti-skid tensioning blocks that slide respectively in one respective linear T-shaped groove on the input and output shaft conical rollers.
6. The flexibly engaged continuously variable transmission gearbox according to claim 1, characterized in that: with the T-shaped sprocket members provided on their upper part with sprocket teeth having an equal pitch of teeth, the sprocket teeth are parallel to the centerline of the input or output shaft conical roller and engage with the tooth-shaped chain for transmission, and the T-shaped block at the lower part slidably fits in shape and size with the T-shaped groove on the conical roller.
7. The flexibly engaged continuously variable transmission gearbox according to claim 1, characterized in that: a dynamic balance adjustment mechanism during rotation of the power input and output shaft conical rollers is composed of two conic arc toothed-chain symmetrical tensioning balance blocks and two conic arc toothed-chain tensioning balance blocks fastened inside four linear balance grooves on the respective conical rollers.
8. The flexibly engaged continuously variable transmission gearbox according to claim 1, characterized in that: the power input and output shaft conical rollers are two truncated cones having the equal diameter and taper, and are arranged in the transmission forwardly and reversely; and the power input and output shaft conical rollers are provided respectively on their surface with five T-shaped grooves always equidistant in different diameter positions, one T-shaped toothed-chain anti-skid tensioning block linear T-shaped groove, and four fastening balance block linear T-shaped grooves, totally ten T-shaped grooves.
9. The flexibly engaged continuously variable transmission gearbox according to claim 1, characterized in that: a rotational speed adjustment actuator of the transmission works as follows: a rotational speed adjustment servo motor drives a rotational speed adjustment sun gear, then drives input and output shaft rotational speed adjustment planet gears engaging with the sun gear to rotate, then drives an input and output shaft rotational speed adjustment lead screw to rotate by a fixed key, and then drives the input and output shaft rotational speed adjustment nut idler wheel on the rotational speed adjustment screw guide pillar to move linearly, and finally drives the tooth-shaped chain and the sectional flexible sprocket to make translation in different engagement diameter positions on the input and output shaft conical rollers, so as to adjust the rotational speed of the output shaft.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION OF THE EMBODIMENTS
(18) The present invention will be further described below with reference to drawings and examples.
(19) Example: A flexibly engaged continuously variable transmission gearbox is provided, as shown in the figures.
(20) I. The power input/output sequential transfer process of the transmission:
(21) In
(22) In the power transmission process, by the rotation of the input shaft conical roller 1, power drives the five sectional input flexible sprocket members 2 to rotate that are slidably matched in the five equidistant T-shaped grooves on the input shaft conical roller; then the sectional flexible sprocket drives the tooth-shaped chain 3 engaged therewith to transmit, and then drives the five sectional output flexible sprocket members 4 to rotate that are slidably matched in the five equidistant T-shaped grooves on the output shaft conical roller, with the five sectional output flexible sprocket members connected to the five equidistant slidable T-shaped grooves on the output shaft conical roller 5, thus driving the output shaft conical roller 5 to rotate to output power.
(23) II. The sequential transfer process of the rotational speed adjustment actuator components of the transmission:
(24) In
(25) The speed adjustment process at the end of the input shaft is as follows: A rotational speed adjustment servo motor 8.fwdarw.an input shaft rotational speed adjustment sun gear 9.fwdarw.four input shaft rotational speed adjustment planet gears 10.fwdarw.three input shaft rotational speed adjustment lead screws 7 and one rotational speed adjustment lead screw 11 shared by the input and output shafts.fwdarw.three toothed-chain rotational speed input adjusting nut idler wheel 6 on four rotational speed adjustment screw guide pillars 12, and one rotational speed adjustment nut idler wheel 13 shared by the toothed-chain input and output shafts a tooth-shaped chain 3.
(26) The speed adjustment process at the end of the output shaft is as follows: A rotational speed adjustment lead screw 11 shared by the input and output shafts.fwdarw.an output shaft rotational speed adjustment planet gear 14 on the shared rotational speed adjustment lead screw.fwdarw.an output shaft rotational speed adjustment sun gear 15.fwdarw.the rest three output shaft rotational speed adjustment planet gears 14.fwdarw.three output shaft rotational speed adjustment lead screws 16.fwdarw.three toothed-chain rotational speed output adjusting nut idler wheel 17 on four rotational speed adjustment screw guide pillars 12, and one rotational speed adjustment nut idler wheel 13 shared by the toothed-chain input and output shafts.fwdarw.a tooth-shaped chain 3.
(27) When the rotational speed adjustment servo motor 8 rotates, it drives the input shaft rotational speed adjustment sun gear 9 to rotate, then drives the four input shaft rotational speed adjustment planet gears 10 to rotate, and then drives the three input shaft rotational speed adjustment lead screws 7 fitted on the planet gears through a keyway and one rotational speed adjustment lead screw 11 shared by the input and output shafts to rotate, and finally makes the three toothed-chain rotational speed input adjusting nut idler wheel 6 and one rotational speed adjustment nut idler wheel 13 shared by the toothed-chain input and output shafts move on the four rotational speed adjustment screw guide pillars 12, so as to change the transmission speed of the tooth-shaped chain 3 by changing the different rotational diameter position of the tooth-shaped chain 3 on the power input shaft conical roller 1; that is, the rotational speed is finally changed by changing the engagement diameter position of the sectional flexible sprocket and the tooth-shaped chain on the power input shaft conical roller 1 and the power output shaft conical roller 5. When the tooth-shaped chain 3 and the rotational speed adjustment nut idler wheel move to the positions shown in
(28) III. The sliding track of the tooth-shaped chain and the sectional T-shaped flexible sprocket member, and the anti-skid tensioning positioning mechanism:
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(30) IV. The dynamic balance adjustment mechanism during rotation of the power input and output shaft conical rollers:
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