Continuously variable transmission

US10428939B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-10428939-B2
Application numberUS-201715675452-A
CountryUS
Kind codeB2
Filing dateAug 11, 2017
Priority dateFeb 28, 2003
Publication dateOct 1, 2019
Grant dateOct 1, 2019

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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 variable speed transmission having a plurality of tilting balls and opposing input and output discs is illustrated and described that provides an infinite number of speed combinations over its transmission ratio range. The use of a planetary gear set allows minimum speeds to be in reverse and the unique geometry of the transmission allows all of the power paths to be coaxial, thereby reducing overall size and complexity of the transmission in comparison to transmissions achieving similar transmission ratio ranges.

First claim

Opening claim text (preview).

What is claimed is: 1. A variable speed transmission configurable for use as a continuously variable planetary gearset, the variable speed transmission comprising: a plurality of balls distributed radially about a main shaft defining a longitudinal axis, each ball having an axle defining a tiltable axis about which the ball rotates; an input disc positioned on a first side of the plurality of balls; an output disc positioned on a second side of the plurality of balls opposite the input disc; an idler positioned radially inward of and in contact with the plurality of balls; and a cage that is rotatable about the longitudinal axis, wherein a first end and a second end of each axle is coupled to the cage, wherein radial translation of one or more of the first end and the second end of each axle tilts the plurality of balls to change a speed ratio of the variable speed transmission, wherein a first line of contact is formed between the input disc and the plurality of balls based on the tilt angle, forming a first variable rolling diameter for functioning as a first planet gear, wherein a second line of contact is formed between the idler and the plurality of balls based on the tilt angle, forming a second variable rolling diameter for functioning as a second planet gear, and wherein a third line of contact is formed between the output disc and the plurality of balls based on the tilt angle, forming a third variable rolling diameter for functioning as a third planet gear. 2. The variable speed transmission of claim 1 , wherein the variable speed transmission is configured to receive power from a planetary gear set, wherein at least one of the input disc, the idler, and the cage receives power, and wherein at least one of the output disc, the idler, and the cage transmits power out of the variable speed transmission. 3. The variable speed transmission of claim 1 , wherein at least two of the input disc, the idler, and the cage are configured to receive power from a planetary gear set, and wherein at least one of the output disc, the idler, and the cage transmits power out of the variable speed transmission. 4. The variable speed transmission of claim 3 , wherein at least one of the input disc, the idler, and the cage is configured to receive power from the planetary gear set, and wherein at least two of the output disc, the idler, and the cage transmits power out of the variable speed transmission. 5. The variable speed transmission of claim 3 , wherein power is received from a sun gear, a planet carrier, or a ring gear from the planetary gear set, and wherein at least two of the output disc, the idler, and the cage transmit power out of the variable speed transmission. 6. A drivetrain comprising: a planetary gear set comprising a ring gear, a sun gear, and a plurality of planet gears rotatably coupled to a carrier; and a variable speed transmission coupled to the planetary gear set, the variable speed transmission comprising: a plurality of balls distributed radially about a main shaft defining a longitudinal axis, each ball having an axle defining a tiltable axis about which the ball rotates, a first disc positioned on a first side of the plurality of balls, a second disc positioned on a second side of the plurality of balls opposite the first disc, an idler positioned radially inward of and in contact with the plurality of balls, and a cage that is rotatable about the longitudinal axis, wherein a first end and a second end of each axle is coupled to the cage, wherein moving one or more of the first end and the second end of each axle tilts the plurality of ball axles to change a speed ratio of the variable speed transmission, wherein the drivetrain is configured to receive at least one power input and transfer at least one power output, wherein a first line of contact is formed between the input disc and the plurality of balls based on the tilt angle, forming a first variable rolling diameter for functioning as a first planet gear, wherein a second line of contact is formed between the idler and the plurality of balls based on the tilt angle, forming a second variable rolling diameter for functioning as a second planet gear, and wherein a third line of contact is formed between the output disc and the plurality of balls based on the tilt angle, forming a third variable rolling diameter for functioning as a third planet gear. 7. The drivetrain of claim 6 , wherein power is received by the planetary gear set and is transferred from at least one of the sun gear, the carrier, and the ring gear of the planetary gear set to at least one of the idler, the cage, the first disc, and the second disc of the variable speed transmission. 8. The drivetrain of claim 7 , wherein at least one of the sun gear, the carrier, and the ring gear is fixed to ground. 9. The drivetrain of claim 7 , wherein a first power path comprises power received by the planetary gear set and transferred to an input side of the variable speed transmission, and wherein a second power path comprises power received by the planetary gear set and transferred to an output side of the variable speed transmission. 10. The drivetrain of claim 9 , wherein the second power path comprises: a gear shaft for receiving power from the input disc; a gear box for receiving power from the gear shaft; a gearbox shaft for receiving power from the gear box; and a third gear coupled to the gearbox shaft and the planetary gear set. 11. The drivetrain of claim 7 , wherein at least two of the input disc, the idler, and the cage are configured to receive power from the planetary gear set, and wherein at least one of the output disc, the idler, and the cage transmits power out of the variable speed transmission. 12. The drivetrain of claim 6 , wherein at least one of the input disc, the idler, and the cage is configured to receive power from the planetary gear set, and wherein at least one of the output disc, the idler, and the cage transmits power out of the variable speed transmission. 13. The drivetrain of claim 7 , wherein the planetary gear set is coupled as an input to the variable speed transmission.

Assignees

Inventors

Classifications

  • Power-split transmissions with summing differentials, with the input of the CVT connected or connectable to the input shaft · CPC title

  • in which a member of uniform effective diameter mounted on a shaft may co-operate with different parts of another member · CPC title

  • with external friction surface · CPC title

  • Means to drive tool · CPC title

  • of changeable ratio · CPC title

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What does patent US10428939B2 cover?
A variable speed transmission having a plurality of tilting balls and opposing input and output discs is illustrated and described that provides an infinite number of speed combinations over its transmission ratio range. The use of a planetary gear set allows minimum speeds to be in reverse and the unique geometry of the transmission allows all of the power paths to be coaxial, thereby reducing…
Who is the assignee on this patent?
Fallbrook Ip Co Llc
What technology area does this patent fall under?
Primary CPC classification F16H61/6649. Mapped technology areas include Mechanical Engineering.
When was this patent published?
Publication date Tue Oct 01 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 12 related publications on this page (citations in our corpus or others sharing the same primary CPC).