Drive pulley for a continuously variable transmission
US-2020166115-A1 · May 28, 2020 · US
US11015697B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11015697-B2 |
| Application number | US-201615781897-A |
| Country | US |
| Kind code | B2 |
| Filing date | Dec 1, 2016 |
| Priority date | Dec 10, 2015 |
| Publication date | May 25, 2021 |
| Grant date | May 25, 2021 |
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A continuously variable transmission device (1) for a two-, three- or four-wheel motorcycle comprises a gear shift regulation device provided with a slide (40) axially slidable and suitable to engage special rollers (18) to hold them during the gear shift. A mobile bushing (9) is suitable to influence the slide (40) to cause its translation from a rearward position to a forward limit position to engage the special rollers (18).
Opening claim text (preview).
The invention claimed is: 1. A continuously variable transmission device for a two-, three- or four-wheel motorcycle, connectable to a drive shaft comprising: a drive pulley for a V-belt, equipped with a mobile bushing carrying one of the active surfaces for the V-belt, a speed controller to obtain a gear shift between low gear and high gear, said speed controller comprising a container, supported by the mobile bushing and provided with a shaped seat, and a plurality of rollers housed in the seat, the mobile bushing being slidable axially under the action of the rollers, said rollers being provided with an engagement device; a gear shift regulation device, comprising a slide axially slidable and suitable to engage the rollers to hold them during the gear shift; wherein the mobile bushing is suitable to influence the slide to cause its translation from a retracted position to an advanced limit position to engage the special rollers; and wherein the slide comprises a tubular wall extending along a rotation axis between a lock end and a retention end. 2. A transmission device according to claim 1 , wherein the gear shift regulation device comprises a locking device comprising at least one key radially translatable between a retracted radial position and an advanced radial position in which it prevents the slide from returning to the retracted position when not influenced by the mobile bushing. 3. A transmission device according to claim 2 , wherein the regulation device comprises an actuating device comprising an actuating pin slidable axially between a retracted position and an advanced position, in order to influence the key and cause its translation from the retracted radial position to the advanced radial position. 4. A transmission device according to claim 3 , wherein said key is engageable with the slide to prevent the return of the key in the retracted radial position when not influenced by the pin. 5. A transmission device according to claim 4 , wherein said actuating device comprises an abutment element and an abutment spring, configured to permanently influence the slide from an advanced position towards the retracted position. 6. A transmission device according to claim 5 , wherein the abutment element and the abutment spring are also configured to permanently influence the actuation pin from the advanced position to the retracted position. 7. A transmission device according to claim 5 , wherein the slide, in the retracted position, prevents the exit of the key from the retracted position to the advanced position, thus blocking also the translation of the pin and allowing elastically loading an actuation spring acting on said pin to permanently influence it from the retracted position to the advanced position. 8. An assembly comprising: a drive shaft, and a continuously variable transmission device, comprising: A) a drive pulley for a V-belt, equipped with a mobile bushing carrying one of the active surfaces for the V-belt, the mobile bushing being slidable axially under the action of a plurality of rollers provided with an engagement device, and with a speed controller to obtain a gear shift between low gear and high gear; B) a gear shift regulation device, comprising a slide axially slidable and suitable to engage the rollers to hold them during the gear shift; C) wherein the mobile bushing is suitable to influence the slide to cause its translation from a retracted position to an advanced limit position to engage the rollers; wherein the drive shaft is connected integrally in rotation to the drive pulley, coaxially to this; and wherein the slide comprises a tubular wall extending along a rotation axis between a lock end and a retention end. 9. A roller for a gear shift regulation device of a transmission device, comprising a rolling body and engagement device suitable to be held by counter-engagement means of the gear shift regulation device, so as to realize a unilateral radial constraint, the roller being anchorable in a discriminable manner; wherein the engagement device comprises a stem that extends away from the rolling body, said stem ending with an engagement portion suitable to engage with a gripping edge of a slide of the gear shift regulation device; and wherein the slide comprises a tubular wall extending along a rotation axis between a lock end and a retention end. 10. A roller according to claim 9 , wherein the slide has an annular flange having a gripping edge configured to engage the rollers in a discriminable manner as a counter-engagement means, in order to prevent the rollers from moving entirely radially outwardly with respect to the drive shaft. 11. A roller according to claim 9 , further comprising a stem extending away from the rolling body, ending with an engagement portion suitable to engage with the gripping edge of the slide so as to realize a unilateral radial constraint which prevents radial outward movement of the special roller. 12. A roller according to claim 9 , wherein the rolling body, when not influenced by the gearshift regulation device, is designed to roll on a surface of a seat of a container of a speed controller.
characterised by means for controlling the geometrical interrelationship of pulleys and the endless flexible member, e.g. belt alignment or position of the resulting axial pulley force in the plane perpendicular to the pulley axis · CPC title
only one flange of each pulley being adjustable · CPC title
actuated by centrifugal masses · CPC title
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