Motor vehicle gear arrangement for a power assist gearing in a motor vehicle
A motor-vehicle gear arrangement for a power-assist gearing in a motor vehicle, that includes a gear, a flange arrangement including at least one flange, wherein the gear is located adjacent to the flange in the flange arrangement so as to rotate about a common axis, and at least one connecting element to connect the gear to the at least one flange. This gear arrangement, or a flange for this gear arrangement, is advantageous due to the fact that the ribs are formed on the flange laterally within a plane perpendicularly to the rotational axis so as to reinforce the flange.
1. Motor-vehicle gear arrangement for a power-assist gearing, comprising:
a gear;
a flange arrangement including at least one flange, wherein the gear is located adjacent to the flange so as to rotate about a common axis, a metallic hub is inserted into an axial opening of the flange in a rotationally fixed manner for the purpose of introducing a spindle, the flange is fabricated out of plastic, where the flange includes a lateral surface, a plurality of ribs formed on the lateral surface reinforcing the flange, and a plurality of passages, where the plurality of ribs include radially extending ribs, at least one circumferentially extending rib, and a plurality of circumferentially ring shaped ribs, where the radially extending ribs and the circumferentially extending rib are arranged in a framework, and where each of the circumferentially ring shaped ribs extends around a respective one of the passages; and
a plurality of pin-shaped connecting elements axially extending through the gear and the passages in the flange connecting the gear to the flange, where each of the pin-shaped connecting elements are in contact with a respective one of the circumferentially ring shaped ribs.
2. Motor-vehicle gear arrangement according to claim 1 , wherein the pin-shaped connecting elements connect the flange to an additional flange, and passes through connecting openings disposed within the gear located between the flanges.
3. Motor-vehicle gear arrangement according to claim 2 , in which the additional flange is fabricated out of metal.
4. Motor-vehicle gear arrangement according to claim 2 , in which the additional flange is formed from a flat disk having depressions on one side, wherein the depressions form corresponding protrusions on the opposite side.
5. Motor-vehicle gear arrangement according to claim 1 , wherein the flange and the plurality of ribs are fabricated out of plastic.
6. Motor-vehicle gear arrangement according to claim 1 , wherein the plurality of ribs are formed as a single piece with the flange.
7. Motor-vehicle gear arrangement according to claim 1 , wherein at least one of the plurality of ribs is circumferentially adjacent to an edge of the flange.
8. Motor-vehicle gear arrangement according to claim 1 , wherein the connecting element passes through a flange neck of the flange, and wherein the flange neck passes into or through an opening within the gear in the direction of the gear.
9. Motor-vehicle gear arrangement according to claim 1 , wherein a sprue segment for injection molding of the flange is located on a side of the flange on which the plurality of ribs are located.
10. Motor-vehicle gear arrangement according to claim 1 , further comprising at least one sprue segment for injection molding of the flange, which sprue segment is located adjacent the plurality of passages for the insertion of the connecting element.