The invention relates to wheel covers for wheels having exposed axle hubs, and more specifically, to a wheel cover and mounting device for a wheel having an exposed axle hub.
Wheel covers can provide aesthetic and aerodynamic benefits to a vehicle. To allow access the wheel for service, for example to access the valve stem or the lugs, it is preferable that a wheel cover be easily mounted and removed. Conventional wheel cover mountings include spring clips that engage the wheel rim, but these can be insecure, in that a jolt to the wheel can dislodge the wheel cover. Other devices include brackets and threaded fasteners that engage the wheel lugs, but these are inconvenient to mount and remove.
The invention provides a: wheel cover and mounting device that is simple and quick to attach and remove from a wheel hub.
The invention is advantageously applied to an aerodynamic wheel cover having an outward-facing surface designed for low air drag as the wheel turns and moves through space.
A wheel cover and mounting device according to the invention includes a wheel cover and a grappling device attached to the wheel cover. The grappling device includes gripping members for gripping the axle hub and a drive mechanism for selectively moving the gripping members between a gripping position and a releasing position,
According to one aspect of the invention, the grappling device includes a body having a flange on which the wheel or is mounted.
According to the invention, the gripping members are formed as tines or tongs having a hooked end to engage the axle hub. The tongs are pivotally mounted at an end opposite the hooked end to a. collar movably mounted on the body. The device further includes links that are pivotally mounted to a cuff. A link is pivotally connected to each of the tongs at a point spaced from the pivot end. The cuff is fixed to the body and the links control the movement of the tongs as the collar moves on the shaft to cause the tongs to close together to a gripping position or spread apart to a release position.
According to the invention, a drive mechanism is included for causing the collar to move on the shaft for selectively moving the gripping members between the gripping position and the release position. The drive mechanism includes a handle accessible from an outer surface of the wheel cover, the handle being attached to a shaft mounted to and extending perpendicularly from the wheel cover. The handle extends through a hole in the wheel cover.
According to one embodiment, the shaft is threaded and the collar carrying the gripping members is carried on a threaded carrier, the shaft and carrier being interengaged so that rotation of the shaft causes axial movement of the carrier and collar, which in turn causes the gripping members to move.
According to another embodiment, the handle includes a cam and is pivotally connected to the shaft. Pivoting the handle against the wheel cover causes the shaft to slide axially. The collar and carrier are fixed to the shaft and move with it. The axial movement of the collar causes the gripping members to move between the gripping position and the release position.
According to yet another embodiment, the shaft is mourned in body and spring biased toward the wheel cover. The collar is connected to the shaft so that axial sliding of the shaft causes the movement of the collar and corresponding pivoting of the gripping members. The shaft is pressed for movement by the handle connected to an end of the shaft accessible through a hole in the wheel cover.
The invention will be better understood by reference to the following detailed description read in conjunction with the appended drawing, in which;
A wheel cover and mounting mechanism 10 according to an embodiment of the invention are shown in perspective view in
The wheel cover 12 is formed as a disc having a centrally located hole 14 covered by a cap 16. As described below, the hole 14 allows access to a handle for operating the mounting mechanism. An outer surface 15 of the wheel cover 12, that is, the side that faces outward from the wheel when the cover is in the an installed position, is preferably smooth to provide a low aerodynamic drag surface. Radially extending ribs 18 are formed on an inner surface 17, opposite the outer surface 15, to provide stiffness to the wheel cover and are shaped to seat on a wheel rim when the cover is installed on a wheel. As seen in
An embodiment of a mechanism 30 for gripping the axle hub 2 is shown in perspective view in
Turning to the exploded view of the mechanism in
Turning to
A carrier 54 formed as a hollow cylinder is disposed in the body 32 in an annular space between the body and the shaft 50. The shaft 52 is threaded on an outer surface and the carrier 54 is threaded on an inner surface, the two threaded surfaces being interengaged so that rotation of the shaft 50 by the handle 52 causes, in the manner of a worm, axial movement of the carrier 54. The collar 40 is connected to the carrier 54 by a screw 56 that engages the carrier through a slot in the body 32. Thus, the collar 40 moves with the carrier 54 as the shaft 50 is rotated. Preferably, the shaft 50 and carrier 54 threads are pitched so that only two or three turns are required to close the gripping members on the flange.
Other arrangements for operating the gripping members are possible. For example, as shown in the simplified view of
Another alternative arrangement, illustrated in a simplified form in
Other arrangements are possible. For example, the spring could be a pneumatic spring.
The invention has been described in terms of preferred principles, embodiments and components, however, those skilled in the art will recognize that substitutions may be made without departing from the scope of the invention as defined by the appended claims.
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/US10/40542 | 6/30/2010 | WO | 00 | 12/10/2012 |