Abstract:
A joint assembly including a housing including an inner diameter portion having a tapered surface; and at least one shaft having an outer diameter portion having a tapered surface that is complementary in shape to the inner diameter portion of the housing, where the shaft is adapted to rotate relative to the housing, and where the frictional fit is adjustable by modifying the axial position of the shaft relative to the housing.
Abstract:
A hub and a hub series are provided for at least partially muscle-powered bicycles. The hub includes a hub shell and a bearing unit for rotatably supporting the hub shell relative to an axle. The bearing unit includes two bearing rings having a take-up surface each and a raceway each. A bearing ring configured as an outer ring is oriented with its take-up surface to a bearing seat of the hub shell. A bearing ring configured as an inner ring is oriented with its take-up surface to the axle. Rolling members are disposed between the raceways of the bearing rings. The bearing ring includes a cut-out on its take-up surface for weight reduction so that the bearing ring is disposed spaced apart from the bearing seat and/or the axle in the region of the cut-out.
Abstract:
A bicycle rolling-element bearing assembly includes an outer bearing ring, an inner bearing ring, a plurality of rolling elements disposed between the outer bearing ring and the inner bearing ring and rotatably supporting the outer bearing ring relative to the inner bearing ring, and a lubricant reservoir, configured as a first cage, for storing and dispensing a lubricant, the first cage including bridge elements extending between the rolling elements and at least one side ring connecting the bridge elements.
Abstract:
A bearing device for bicycles includes a first race having a first inclined surface and an annular engaging recess defmed in an inner periphery thereof. A support ring has a second inclined surface defined in an outer periphery thereof A roller set has a plurality of rollers which are located at an angle relative to a horizontal plane. The roller set is located between the first race and the support ring. The rollers are in contact with the first and second inclined surfaces. A second race includes a horizontal flange and a vertical flange which is engaged with the annular engaging recess and a noise absorbing material is coated to the second race to absorb noise.
Abstract:
A device for adjusting the bearing play of components that are mounted such that they can rotate coaxially in relation to one another, which components are rotatably joined to one another via two roller bearings arranged at an axial distance to one another, is operatively connected to one of the two roller bearings by an end side, and is operatively connected to a counter bearing by the opposing end side. The device is formed by two rings that are arranged next to one another, in a coaxial manner on one of the components. The opposing end surfaces thereof each have at least one contour projecting from the plane of the end surfaces. At least one of the contours is provided with an incline on which the at least one opposing contour slides. One ring is operatively connected to the counter bearing by the other end surface, and the other ring is operatively connected to the roller bearing. A device for the mutual radial rotation and a device for the locking of the axially moving ring in the assumed axial position are provided on both rings.
Abstract:
A linear motion assembly including a component having a longitudinal axis and adapted to translate along the longitudinal axis, and a bearing comprising a spiral body including a substrate and a low friction material, wherein the bearing extends around the component and provides a low friction interface for translation of the component, and wherein the bearing is adapted to prevent longitudinal translation of the component in a locked condition and permit longitudinal translation of the component in an unlocked condition. In an embodiment, the bearing is adapted to transition between the locked and unlocked conditions upon circumferential translation of an axial end of the spiral body, longitudinal translation of an axial end of the spiral body, or a combination thereof.
Abstract:
In one example, a structure for attaching a wheel to one of a frame of a motorcycle or a bicycle may include an axle having first and second opposing end portions and supporting a wheel, a left axle support collar structure configured to support the first opposing end portion of the axle, and a right axle support collar structure configured to support the second opposing end portion of the axle. A first bearing is positioned in the left axle support collar structure, and a second bearing is positioned in the left axle support collar structure. The axle rotates relative to the frame.
Abstract:
A method of forming a corrosion resistant bushing includes bonding a sliding layer to a first surface of a load bearing substrate to form a laminate sheet and cutting a blank from the laminate sheet. The laminate sheet includes an exposed surface corresponding to a second surface of the load bearing substrate. The blank includes cut edges having a load bearing substrate portion. The method further includes forming a semi-finished bushing from the blank, and applying a corrosion resistant coating to the exposed surface and the load bearing substrate portion of the cut edges to form the corrosion resistant bushing.
Abstract:
A bearing device for bicycles includes a first race with a support ring connected thereto and a plurality of beads connected by a ring are received in a space enclosed by the first race and the support ring. An annular engaging recess is defined in an inner periphery of the first race. A second race having an L-shaped cross section includes a horizontal flange and a vertical flange which is engaged with the annular engaging recess and the support ring is in contact with the horizontal flange. A seal ring is located between the horizontal flange of the second race and the support ring.
Abstract:
Displacement bearing, in particular for fork pipes of motorcycle forks, having an inside part which has raceways extending in the direction of fork displacement on its outside part, an outside part which extends around the inside part and is displaceable in relation to the inside part, at least two roller bodies which are arranged in the interior of the outside part and which are mounted so that each can rotate about a respective axis of rotation situated in the interior of the outside part, so that the roller bodies roll on the raceways when there is a displacement of the inside part in the outside part. The roller bodies have a convex shape and the raceways each have a concave shape for transferring forces acting perpendicularly and/or transversely on the raceways.