Automatic transmission

US10328799B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-10328799-B2
Application numberUS-201715665664-A
CountryUS
Kind codeB2
Filing dateAug 1, 2017
Priority dateAug 1, 2017
Publication dateJun 25, 2019
Grant dateJun 25, 2019

How to read this patent

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  1. Title

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  2. Abstract

    A short plain-language summary of the technical disclosure.

  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

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  6. CPC / IPC classifications

    Technology tags used to group this patent with similar filings.

  7. Citations and related patents

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Abstract

Official abstract text for this publication.

A clutch assembly for a transmission having a gear radially supported relative to a shaft in which the clutch assembly includes a clutch plate rotationally coupled to the shaft. The clutch plate further includes an engaged state whereby a surface of the clutch plate abuts a surface of the gear to rotationally couple the gear to the shaft and a disengaged state whereby the clutch surface is spaced from the gear surface to rotationally uncouple the gear and the clutch plate. A transmission assembly includes a first shaft, a second shaft, and a plurality of gears interconnecting the first shaft and the second shaft such that each gear of the plurality of gears is radially supported by one of the first and second shafts. The transmission assembly can further include a plurality of the clutch assemblies.

First claim

Opening claim text (preview).

The invention claimed is: 1. A clutch assembly for a transmission having a gear radially supported relative to a shaft, the clutch assembly comprising: a clutch plate rotationally coupled to the shaft, wherein the clutch plate has an engaged state whereby a surface of the clutch plate abuts a surface of the gear to rotationally couple the gear to the shaft, and wherein the clutch plate has a disengaged state whereby the surface of the clutch plate is spaced from the surface of the gear to rotationally uncouple the gear and the shaft; a locking member disposed within a recess of the gear; and a biasing member abutting the locking member causing a portion of the locking member to protrude from the gear towards the clutch plate. 2. The clutch assembly of claim 1 , and further comprising: a bearing runner rotationally coupled to the shaft; and a bearing joined to the bearing runner and the gear, wherein the bearing radially restrains the gear relative to the shaft and permits rotation of the gear about the shaft. 3. The clutch assembly of claim 1 , and further comprising: a thrust bearing joined to the clutch plate; and an actuation arm supported by the thrust bearing relative to the shaft, wherein the thrust bearing permits relative rotation between the actuation arm and the clutch plate about the shaft. 4. The clutch assembly of claim 3 , and further comprising: an actuator; and a linkage coupling a distal end of the actuation arm to the actuator, wherein a first position of the actuator places the clutch plate in the disengaged state, and wherein a second position of the actuator places the clutch plate in an engaged state. 5. The assembly of claim 1 , wherein the clutch plate has a bore aligned with the locking member, and wherein the locking member engages the bore in the engaged state and thereby rotationally couples the gear and the clutch plate. 6. The assembly of claim 1 , wherein the clutch surface and the gear surface have complementary conical shapes. 7. A transmission comprising: a first shaft driven by an engine; a second shaft; a plurality of gears interconnecting the first shaft and the second shaft, wherein each gear of the plurality of gears is radially supported by one of the first and second shafts; and a plurality of clutch assemblies, each clutch assembly comprising: a clutch plate rotationally coupled to one of the first and second shafts, wherein the clutch plate has an engaged state whereby a surface of the clutch plate abuts a mating surface of one of the plurality of gears to rotationally couple the one of the plurality of gears to one of the first and second shafts and a disengaged state whereby the clutch surface is spaced from the mating surface to rotationally uncouple the one of the plurality of gears and the clutch plate; a locking member disposed within a recess of the gear; and a biasing member abutting the locking member causing a portion of the locking member to protrude from the gear towards the clutch plate, wherein the clutch plate has a bore aligned with the locking member, and wherein the locking member engages the bore in the engaged state and thereby rotationally couples the gear and the clutch plate. 8. The transmission of claim 7 , wherein: the plurality of clutches includes a first clutch assembly, a second clutch assembly, and a third clutch assembly; the plurality of gears includes a first gear, a second gear, and a third gear; the first clutch assembly has a first clutch plate configured to engage the first gear that is rotationally coupled to and concentric with the first shaft; the second clutch assembly has a second clutch plate configured to engage the second gear that is rotationally coupled to and concentric with the second shaft; and the third clutch assembly has a third clutch plate configured to engage the third gear that is rotationally coupled to and concentric with the second shaft. 9. The transmission of claim 8 , wherein the first clutch assembly has an engaged state that couples the first shaft to the second shaft via a first set of the plurality of gears having a speed-increasing gear ratio, and wherein the second clutch assembly and the third clutch assembly have engaged states that couple the first shaft to the second shaft via a second set of the plurality of gears and a third set of the plurality of gears, respectively, and wherein the second set of gears and the third set of gears have speed-reducing gear ratios. 10. The transmission of claim 9 , wherein the first shaft has an operational range from a first rotational speed to a second rotational speed, and wherein the first, second, and third gear ratios are configured to maintain the second shaft between a third rotational speed and a fourth rotational speed, and wherein the difference between the first and second rotational speeds is greater than the difference between the third and fourth rotational speeds. 11. The transmission of claim 7 , and further comprising: a third shaft; and a second plurality of gears interconnecting the second shaft to the third shaft. 12. The transmission of claim 11 , wherein the second plurality of gears has a fourth gear ratio whereby a speed of the third shaft is greater than a speed of the second shaft. 13. The transmission of claim 7 , wherein each gear of the plurality of gears is enmeshed with at least one of the other gears of the plurality of gears in the engaged and disengaged states of each clutch assembly. 14. The transmission of claim 7 , wherein each clutch assembly further comprises: a bearing runner rotationally coupled to one of the first and second shafts; and a bearing joined to the bearing runner and one of the plurality of gears engageable by one of the clutch plates, wherein the bearing radially restrains the gear relative to the shaft and permits rotation of the gear about the shaft. 15. The transmission of claim 14 , wherein the bearing runners of each clutch assembly are interchangeable. 16. The transmission of claim 14 , wherein the bearings of each clutch assembly are interchangeable. 17. The transmission of claim 7 , wherein the plurality of gears include a plurality of gear sets, each gear set defining a gear ratio by which the first shaft drives the second shaft, and wherein the gear ratios are configured to drive the second shaft within an output speed range that is less than an input speed range of the first shaft. 18. The transmission of claim 7 , wherein the clutch plates of each clutch assembly are interchangeable. 19. A transmission comprising: a first shaft driven by an engine; a second shaft; a first set gears interconnecting the first shaft and the second shaft and including a first gear, wherein the first gear is rotationally coupled to and concentric with the first shaft, and wherein the first set of gears has a speed-increasing gear ratio; a second set of gears interconnecting the first shaft and the second shaft and including a second gear, wherein the second gear is rotationally coupled to and concentric with the second shaft, and wherein the second set of gears has a speed-reducing gear ratio; a third set of gears interconnecting the first shaft and the second shaft and including a third gear, wherein the third gear is rotationally coupled to and concentric with the second shaft, and wherein the third set of gears has a speed-reducing gear ratio, and wherein each gear of the first set of gears, the second set of gears, and the third set of gears is radially supported by one of the first and second shafts; a

Assignees

Inventors

Classifications

  • through a friction clutch · CPC title

  • Electrically actuated clutch with two clutch plates · CPC title

  • with clutching members movable only axially · CPC title

  • F02C7/36Primary

    Power transmission arrangements between the different shafts of the gas turbine plant, or between the gas-turbine plant and the power user ({F02C3/107 - F02C3/13 and} F02C7/32 take precedence; couplings for transmitting rotation F16D; gearing in general F16H) · CPC title

  • the toothed gearing having orbital motion · CPC title

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What does patent US10328799B2 cover?
A clutch assembly for a transmission having a gear radially supported relative to a shaft in which the clutch assembly includes a clutch plate rotationally coupled to the shaft. The clutch plate further includes an engaged state whereby a surface of the clutch plate abuts a surface of the gear to rotationally couple the gear to the shaft and a disengaged state whereby the clutch surface is spac…
Who is the assignee on this patent?
United Technologies Corp
What technology area does this patent fall under?
Primary CPC classification F02C7/36. Mapped technology areas include Mechanical Engineering.
When was this patent published?
Publication date Tue Jun 25 2019 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 6 related publications on this page (citations in our corpus or others sharing the same primary CPC).