The present invention relates to a clutch assembly which engages upon positive torque being provided by an input member to transfer the torque to an output member.
Roller/ramp clutch assemblies are used in a wide variety of applications. One possible application is an automatic locking hub or transfer case differential of a four-wheel drive vehicle. During operation of four-wheel drive vehicles, it is often desirable to disconnect the alternate drive wheels (usually the front wheels) of the vehicle from the remainder of the drive train. When disconnected, the alternate drive wheels can rotate freely with respect to the drive train and, accordingly, they are free to rotate without regard to the rotational speed of the drive train. At other times, it is preferred that the alternate drive wheels of the vehicle automatically lock to the drive train whenever there is relative disproportional rotation between the alternate drive wheels and the input member from the drive train. Roller/ramp clutch assemblies have also been provided where the clutch assembly transfers torque in only one direction and where the torque can be transferred in two directions.
Roller/ramp clutch assemblies generally include concentric driving and driven members with the driving member having axial surfaces which face radially toward the other member. Upon each surface, a roller is loosely held. The rollers are inertially responsive to acceleration of the driving member and when rotational acceleration of the driving member occurs, the inertia of the rollers causes them to move along the surfaces toward a side edge of the surfaces. At the side edge, the distance between these surfaces and the driven member is less than the diameter of the roller and the roller contacts the driven member becoming engaged or locked in the wedge formed between the axial surfaces of the driving member and the circumference of the driven member. In some varieties, the rollers can move along the axial surfaces to either side. In other varieties, engagement with the driven member is only possible by movement of the roller to one side of the surface.
The driving and driven members are typically mounted within or about a respective housing or shaft upon assembly. The mounting relative to the housing and shaft serve to limit axial movement of the members. It is desirable to provide a clutch assembly that is unitized prior to assembly such that the assembly can be shipped and handled as a unitized assembly.
The present invention provides, in one aspect, a clutch bearing assembly including a split outer cylindrical race having opposed axial edges. One outer race axial edge includes a radially inwardly-extending flange having an inner diameter Y. The clutch bearing assembly also includes an inner cylindrical race having opposed axial edges. One inner race axial edge includes a first radially outwardly-extending flange and the opposite inner race axial edge includes a second radially outwardly-extending flange. The second radially outwardly-extending flange has an outer diameter X greater than inner diameter Y such that the second radially outwardly-extending flange radially overlaps the outer race radially inwardly-extending flange. The clutch bearing assembly also includes a plurality of ramps formed on at least one of the outer cylindrical race and the inner cylindrical race. The ramps at least partially define roller pockets. The clutch bearing assembly further includes a plurality of rollers positioned in the roller pockets.
The present invention provides, in another aspect, a method of manufacturing a clutch bearing assembly. The method includes forming an outer cylindrical race having opposed axial edges through a drawing process, forming a radially inwardly-extending flange on one axial edge of the outer cylindrical race, the radially inwardly-extending flange having an inner diameter Y, forming an inner cylindrical race having opposed axial edges through a drawing process, positioning a plurality of rollers between the inner cylindrical race and the outer cylindrical race, forming a first radially outwardly-extending flange on one axial edge of the inner cylindrical race, and forming a second radially outwardly-extending flange on the opposite axial edge of the inner cylindrical race. The second radially outwardly-extending flange has an outer diameter X greater than the inner diameter Y such that the second radially outwardly-extending flange radially overlaps the outer race radially inwardly-extending flange.
Other features and aspects of the invention will become apparent by consideration of the following detailed description and accompanying drawings.
Before any embodiments of the invention are explained in detail, it is to be understood that the invention is not limited in its application to the details of construction and the arrangement of components set forth in the following description or illustrated in the following drawings. The invention is capable of other embodiments and of being practiced or of being carried out in various ways. Also, it is to be understood that the phraseology and terminology used herein is for the purpose of description and should not be regarded as limiting. The use of “including,” “comprising,” or “having” and variations thereof herein is meant to encompass the items listed thereafter and equivalents thereof as well as additional items. Unless specified or limited otherwise, the terms “mounted,” “connected,” “supported,” and “coupled” and variations thereof are used broadly and encompass both direct and indirect mountings, connections, supports, and couplings. Further, “connected” and “coupled” are not restricted to physical or mechanical connections or couplings.
Referring to
To axially retain the rollers 40 within the space between the outer and inner races 12, 30, the outer race 12 has a radially inwardly-extending flange 18 at one axial edge thereof and the opposite edge of the inner race 30 has a radially outwardly-extending flange 36. As can be seen in
Referring to
In the preferred method of assembly, the outer race 12 is formed through a drawing process. The inwardly-extending flange 18 is preferably formed during the drawing process. The inner race 30 is also preferably formed using a drawing process. To facilitate insertion of the rollers 40, one or both of the flanges 34, 36 are drawn as straight lips and are bent or curled over after assembly. To assist in the bending or curling, the flanges 34, 36 are preferably formed with a reduced thickness. After bending or curling, the clutch bearing assembly 10 is a unitized assembly. Alternatively, the inner race 30 may be formed with both flanges 34, 36. The rollers 40 are positioned about the inner race 30 and the axial split 16 allows the outer race 12 to be snapped over the rollers 40 and inner race 30.
Referring to
Various features of the invention are set forth in the following claims.
This application claims priority to U.S. Provisional Patent Application Ser. No. 60/654,973 filed on Feb. 22, 2005, the entire contents of which is incorporated herein by reference.
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/US06/04080 | 2/3/2006 | WO | 00 | 8/8/2007 |
Number | Date | Country | |
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60654973 | Feb 2005 | US |