Multi-mode power trains

US10647193B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-10647193-B2
Application numberUS-201715793522-A
CountryUS
Kind codeB2
Filing dateOct 25, 2017
Priority dateApr 9, 2014
Publication dateMay 12, 2020
Grant dateMay 12, 2020

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  1. Title

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  2. Abstract

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  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

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  7. Citations and related patents

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Abstract

Official abstract text for this publication.

A power train and related vehicle provides multi-mode power transmission. A first continuously variable power source (“CVP”) may convert rotational power received by the engine for transmission to a second CVP. A variator assembly may receive rotational power from the second CVP at a first input and directly from the engine at a second input. A control assembly may allow the power train to shift between multiple modes, such as a series mode, a split-path mode, and a direct mode. The control assembly may provide seamless shifting between at least two of these modes.

First claim

Opening claim text (preview).

What is claimed is: 1. A work vehicle comprising: an engine; a continuously variable power source (CVP); a variator that is operably connected to the engine and the CVP; an output shaft that is operably connected to the variator; and a control assembly including a plurality of transmission components configured to provide selection between a first mode, a second mode, and a third mode; the control assembly, in the first mode, configured to transfer CVP power from the CVP to the output shaft and prevent direct transmission of engine power from the engine to the output shaft; the control assembly, in the second mode, configured to transfer engine power from the engine to the variator, transfer CVP power from the CVP to the variator, and transfer a combination of engine power and CVP power from the variator to the output shaft; and the control assembly, in the third mode, configured to transfer engine power from the engine to the output shaft without transmission of CVP power from the CVP to the output shaft; and the control assembly configured to provide at least one seamless shift between two of the first mode, the second mode, and the third mode; wherein the CVP, in the first mode, is configured to supply first CVP power and rotatably drive a first variator component of a planetary gearset of the variator; wherein the CVP, in the first mode, is configured to supply second CVP power to and rotatably drive a second variator component of the planetary gearset; and wherein a third variator component of the planetary gearset, in the first mode, is configured to output recombined CVP power to rotatably drive the output shaft. 2. The work vehicle of claim 1 , wherein the control assembly includes an engageable transmission member that is configured to move between an engaged position and a disengaged position; wherein the engageable transmission member includes a first component and a second component, the first and second components being rotatably engaged in the engaged position, the first and second components being disengaged in the disengaged position; wherein, in the at least one seamless shift, the engageable transmission member is configured to move from the disengaged position to the engaged position, the first and second components configured to rotate at approximately the same angular speed as the engageable transmission member moves from the disengaged position to the engaged position. 3. The work vehicle of claim 2 , wherein the engageable transmission member is a clutch. 4. The work vehicle of claim 3 , wherein the clutch is a first clutch supported on a first shaft; wherein the control assembly includes a second clutch supported on a second shaft, the first shaft and the second shaft being nonconcentric; and wherein the control assembly is configured to provide the at least one seamless shift in which the first clutch disengages and the second clutch engages. 5. The work vehicle of claim 1 , wherein the CVP is a first CVP; further comprising a second CVP that is electrically connected to the first CVP; wherein the second CVP has a generator mode in which the second CVP generates electrical power from mechanical power supplied by the engine, and wherein the second CVP provides the generated electrical power to the first CVP; and wherein the second CVP has a motor mode in which the second CVP provides power to the engine. 6. The work vehicle of claim 1 , wherein the variator includes a first planetary gearset and a second planetary gearset that are interconnected and supported on a common shaft. 7. The work vehicle of claim 6 , wherein the control assembly includes a clutch that is supported on the common shaft; and wherein the clutch is configured to selectively provide power from the engine to the variator. 8. The work vehicle of claim 1 , wherein the variator includes a first planetary gear set that is supported on a first shaft and a second gearset that is supported on a second shaft; and wherein the first and second shafts are nonconcentric. 9. The work vehicle of claim 1 , wherein the control assembly includes a first clutch and a second clutch; wherein the first clutch is configured to engage and the second clutch is configured to disengage to provide a low speed range for the output shaft; wherein the first clutch is configured to disengage and the second clutch is configured to engage to provide a high speed range for the output shaft; and further comprising an output countershaft that supports a first gear rotatably engaged with the first clutch, a second gear rotatably engaged with the second clutch, and a third gear that is rotatably engaged with the output shaft. 10. A work vehicle comprising: an engine; a continuously variable power source (CVP); a variator that is operably connected to the engine and the CVP; an output shaft that is operably connected to the variator; and a control assembly including a plurality of transmission components configured to provide selection between a first mode and a second mode, the control assembly configured to provide at least one seamless shift between the first mode and the second mode; the control assembly, in the first mode, configured to transfer CVP power from the CVP to the output shaft and prevent direct transmission of engine power from the engine to the output shaft; the control assembly, in the second mode, configured to transfer engine power from the engine to the variator, transfer CVP power from the CVP to the variator, and transfer a combination of engine power and CVP power from the variator to the output shaft; the CVP, in the first mode, is configured to supply first CVP power and rotatably drive a first variator component of a planetary gearset of the variator; wherein the CVP, in the first mode, is configured to supply second CVP power to and rotatably drive a second variator component of the planetary gearset; wherein a third variator component of the planetary gearset, in the first mode, is configured to output recombined CVP power to rotatably drive the output shaft. 11. The work vehicle of claim 10 , wherein the CVP is a first CVP; further comprising a second CVP that is electrically connected to the first CVP; wherein the second CVP has a generator mode in which the second CVP generates electrical power from mechanical power supplied by the engine, and wherein the second CVP provides the generated electrical power to the first CVP; and wherein the second CVP has a motor mode in which the second CVP provides power to the engine. 12. The work vehicle of claim 10 , wherein the control assembly includes an engageable transmission member that is configured to move between an engaged position and a disengaged position; wherein the engageable transmission member includes a first component and a second component, the first and second components being rotatably engaged in the engaged position, the first and second components being disengaged in the disengaged position; wherein, in the at least one seamless shift, the engageable transmission member is configured to move from the disengaged position to the engaged position, the first and second components are configured to rotate at approximately the same angular speed as the engageable transmission member moves from the disengaged position to the engaged position. 13. The work vehicle of claim 12 , wherein the engageable transmission member is a clutch. 14. The work vehicle of claim 13 , wherein the clutch is a first clutch supported on a first shaft; wherein the control assembly includes a second clutch supported on a second shaft, the first shaft and the secon

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What does patent US10647193B2 cover?
A power train and related vehicle provides multi-mode power transmission. A first continuously variable power source (“CVP”) may convert rotational power received by the engine for transmission to a second CVP. A variator assembly may receive rotational power from the second CVP at a first input and directly from the engine at a second input. A control assembly may allow the power train to shif…
Who is the assignee on this patent?
Deere & Co
What technology area does this patent fall under?
Primary CPC classification F16H3/728. Mapped technology areas include Mechanical Engineering.
When was this patent published?
Publication date Tue May 12 2020 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 12 related publications on this page (citations in our corpus or others sharing the same primary CPC).