The field to which the disclosure generally relates includes torque transmission devices and more particularly, includes damping in torque transmission devices.
Torque transmission may involve rotating elements leading from a power source to a load. One such application may involve an internal combustion engine that generates power, which may be delivered to one or more drive wheels through a variable gear ratio transmission.
According to a number of illustrative variations, a product may include a first torque transfer element and a second torque transfer element that may be connected through a gear set. A housing may be provided wherein a damper may be connected between the gear set and the housing.
Other illustrative variations within the scope of the invention will become apparent from the detailed description provided herein. It should be understood that the detailed description and specific examples, while disclosing variations within the scope of the invention, are intended for purposes of illustration only and are not intended to limit the scope of the invention.
Select examples of variations within the scope of the invention will become more fully understood from the detailed description and the accompanying drawings, wherein:
The following description of the variations is merely illustrative in nature and is in no way intended to limit the scope of the invention, its application, or uses.
In a number of variations as illustrated in
The annulus gear 28 may include an outer perimeter 32 with a series of radially outward projecting lugs 34. A clutch disk 36, which may be a friction disk, may include an inner perimeter with a series of slots 38 which may receive the lugs 34 so that the clutch disk 36 may be rotationally fixed on the annulus gear 28. In a number of variations a backing plate 40 may be positioned adjacent the clutch disk 36 and may extend around the annulus gear 28. The backing plate 40 may include an annular groove 42 that may be cut or otherwise formed in the side facing the clutch disk 36 from the inner perimeter 44. The groove 42 may be shaped to receive the clutch disk 36. The backing plate may include an outer perimeter 46 from which a number of posts 48 may extend radially outward.
With additional reference to
In a number of variations a damper 60, or a number of dampers 60 may be positioned between each adjacent post 48 and land 58. In the variation illustrated in
In a number of variations, operation of the product 10 may involve rotational input to the torque transfer element 12 which may rotate the sun gear 18. Rotation of the sun gear 18 may effect rotation of the planet gears 19-21, which may result in rotation of the carrier 26 and the torque transfer element 14. In a number of variations, operation of the product 10 may involve rotational input to the torque transfer element 14 which may rotate the carrier 26. Rotation of the carrier 26 may effect rotation of the planet gears 19-21, which may result in rotation of the sun gear 18 and the torque transfer element 12. In a number of variations, rotation of the planet gears 19-21 may result in rotational force on the annulus gear 36 and the engaged clutch disk 36. The clutch may be closed by actuation of the pressure plate 50 through an actuator 52. In a number of variations, the clutch may remain engaged/closed to provide continuous damping and may be disengaged/opened when desired, or a fixed connection between the gear set and the damper 60 may be provided through the annulus gear 28. Dynamic excitation, which may include phenomenon such as vibration or torque oscillation, may be experienced by the gear set 16. Oscillations may be passed to the damper 60, which may temporarily store the energy during a torque peak, and may release energy during a torque valley. By returning the stored energy during reduced torque, isolation may be provided by the grounded damper 60, recovering energy without losses through heat dissipation.
With reference to
In a number of variations a clutch member 72 may be connected to the carrier 69, or may be integrally formed as one component therewith, which may serve both the functions of containing the gears 67, 68 and as a clutch component. The clutch member 72 may freely rotate around the torque transfer element 64. The clutch member 72 may be a friction disk or may be another clutch component to selectively transfer rotation between the carrier 69 and the housing 73 through a damper 74. In a number of variations additional clutch components may be employed in the transfer of torque from the carrier 69 to the damper 74, such as those described in relation to
In a number of variations illustrated by
In a number of variations the clutch member 84 may be a friction disk or may be another clutch component to selectively transfer rotation between the gear 82 and the housing 85 through a damper 86. In a number of variations additional clutch components may be employed in the transfer of torque from the gear 82 to the damper 86. For example, a backing plate may be engaged with the damper 86 and a pressure plate may force the clutch member 84 against the backing plate. An actuator 87 may provide a mechanism to engage the clutch member, such as by moving a pressure plate toward a backing plate with the clutch member 84 in between. The actuator 87 may be mechanical, fluid power, electrical or otherwise operated. Engagement of the clutch member 84 may transmit torque from the rotating components to the housing 85 to dissipate energy through the damper 86. The damper 86 may be engaged between the clutch member 84 and the housing 85 directly, or indirectly such as through a backing plate. The damper 86 may be connected to the housing 85 so that while it may dampen the rotating elements, it may do so by reciprocating, at least in part, to dissipate energy rather than rotating with the rotating elements. In a number of variations, the clutch may remain engaged/closed to provide continuous damping and may be disengaged/opened when desired, or a fixed connection between the gear set and the damper may be provided through the gear 82.
With reference to
In a number of variations the gear 96 may be connected to or formed with a fixing element 98 which may be a disk shaped component that may extend radially outward from the gear 96 past the ring section 92 of the gear 90. A damper 99 may be connected between the fixing element 98 and a housing 100. As a result, the gear 96 may be fixed to the housing 100 through the damper 99 so that it may reciprocate through compression and extension of the damper 99. The gear 96 may not rotate or may rotate only as permitted by reciprocation of the damper 99. The fixing element 98 may be shaped similar to the backing plate 40 of
In a number of variations input through the torque transfer element 89 may rotate the gear 90, which may rotate the meshing gears 93 and 94. Rotation of the gears 93 and 94 may cause rotation of the carrier 95 and the connected torque transfer element 97. Dynamic excitation encountered by the gear set may be transferred to the gear 96 and the fixing element 98 for dissipating energy through the damper 99. The dampers 74, 86 and 99 may be of any type as described in relation to
In a number of variations as illustrated in
In a number of variations the transmission unit 110 may include the product 88 as described in relation to
The following description of variants is only illustrative of components, elements, acts, product and methods considered to be within the scope of the invention and are not in any way intended to limit such scope by what is specifically disclosed or not expressly set forth. The components, elements, acts, product and methods as described herein may be combined and rearranged other than as expressly described herein and still are considered to be within the scope of the invention.
Variation 1 may involve a product that may include a first torque transfer element and a second torque transfer element connected through a gear set. A housing may be provided with a damper connected between the gear set and the housing.
Variation 2 may include the product according to variation 1 wherein the gear set may be a planetary gear set with a sun gear, a planet gear and an annulus gear. The sun gear may be engaged with the annulus gear through the planet gear.
Variation 3 may include the product according to variation 1 or 2 and may include a first clutch member connected to the gearset, and a second clutch member engageable with the first clutch member. The damper may be connected between the clutch member and the housing.
Variation 4 may include the product according to any of variations 1 through 3 wherein the housing may be a transmission case.
Variation 5 may include the product according to any of variations 1 through 3 wherein the housing may be an engine block.
Variation 6 may include the product according to variation 3 wherein the first clutch member may be a friction disk.
Variation 7 may include the product according to variation 3 or 6 wherein the second clutch member may be a backing plate.
Variation 8 may include the product according to variation 7 wherein the backing plate may include an outer perimeter with a post extending radially outward from the outer perimeter. The post may engage the damper.
Variation 9 may include the product according to variation 7 or 8 and may include a pressure plate that may be positioned on an opposite side of the friction plate from the backing plate. The pressure plate may compress the friction plate against the backing plate.
Variation 10 may involve a product that may include an engine with an output torque transfer element and a transmission having variable gears and an input torque transfer element. A gear set may connect the output torque transfer element with the input torque transfer element. A housing may be included that may not rotate. A damper may be engaged between the gear set and the housing.
Variation 11 may include the product according to variation 10 wherein the gear set may be a planetary gear set that may have a sun gear, a planet gear and an annulus gear. The sun gear may be engaged with the annulus gear through the planet gear.
Variation 12 may include the product according to variation 11 wherein the annulus gear may include an outer perimeter that may have one or more lugs.
Variation 13 may include the product according to any of variations 10 through 12 and may include a first clutch member that may be connected to the gear set. A second clutch member may be included that may be engageable with the first clutch member. The damper may be engaged between the second clutch member and the housing.
Variation 14 may include the product according to variation 13 wherein the first clutch member may be a friction disk, and the second clutch member may be a backing plate.
Variation 15 may include the product according to variation 14 wherein the backing plate may include an outer perimeter that may have a post extending radially outward from the outer perimeter. The post may engage the damper.
Variation 16 may include the product according to variation 14 or 15 and may include a pressure plate that may be positioned on an opposite side of the friction plate from the backing plate. The pressure plate may compress the friction plate against the backing plate.
Variation 17 may include the product according to any of variations 14 through 16 wherein the backing plate may include a groove and the friction disk may be engageable in the groove.
Variation 18 may include the product according to any of variations 14 through 17 wherein the housing may define a circular opening within which the backing plate may be positioned.
Variation 19 may include the product according to variation 18 wherein the backing plate may include a post and the housing may include a land that may extend into the circular opening. The damper may be engaged between the post and the land.
Variation 20 may involve a product that may include a torque transfer element that rotates. A gear set may be driven by the torque transfer element. The gear set may include a sun gear, a planet gear and an annulus gear. The sun gear may be engaged with the annulus gear through the planet gear. A housing may surround the gear set. A damper may be carried by the housing and may be engageable with the gear set at one of: the sun gear; the planet gear; or the annulus gear. The gear set may be grounded to the housing through the damper.