COUPLING ELEMENT FOR TRANSMITTING TORQUE AND DRIVE UNIT COMPRISING SAID COUPLING ELEMENT
For torque transmission, for example between an articulated shaft and a hub to a drive motor vehicle wheel, it is necessary to non-rotatably couple the articulated shaft or a corresponding intermediate piece and the hub to each other. For this purpose, a coupling element, particularly a hub element, is proposed for transmitting torque about a rotational axis that is oriented in an axial direction and has a serration, which extends in the peripheral direction about the rotational axis. The serration has a plurality of teeth. Each tooth is configured as a triangle in a longitudinal section along the peripheral direction such that two tooth faces are formed, which end in a tooth head region, and at least one of the tooth faces is configured convexly in the longitudinal section with respect to an imaginary straight reference tooth face.
1 . A coupling element for transmitting torques about an axis of rotation oriented in an axial direction, comprising:
a spur toothing which extends in the a direction of revolution about the axis of rotation,
the spur toothing having a plurality of teeth, each tooth being of triangle-like design in a longitudinal section along the direction of revolution, so as to form two tooth flanks which end in a tooth tip region,
wherein at least one of the tooth flanks is of crowned design in the longitudinal section with respect to an imaginary straight reference tooth flank.
2 . The coupling element of claim 1 , wherein the crowning is designed so that, after an axial bracing of the spur toothing with a countertoothing, a uniform load bearing of the tooth flanks and/or a more uniform load bearing with respect to the spur toothing having the tooth reference flank are/is achieved.
3 . The coupling element of claim 2 , wherein, in the longitudinal section, a center point of the crowning is arranged centrally and/or in the a middle on the tooth flank.
4 . The coupling element of claim 1 , wherein the tooth flank has, in the longitudinal section, with respect to the reference tooth flank, a maximum deviation of at least 0.005 mm, preferably of at least 0.1 mm, in particular of at least 0.3 mm, and/or of at most 0.9 mm, preferably of at most 0.5 mm, in particular of at most 0.3 mm.
5 . The coupling element of claim 1 , wherein, in the longitudinal section, each reference tooth flank is of a tooth form a triangle in an imaginary prolongation, triangles of adjacent teeth being lined up uninterruptedly next to one another.
6 . The coupling element of claim 5 , wherein a ratio between a maximum deviation of the tooth flank in the longitudinal section with respect to the reference tooth flank and a triangle width is at least 0.005:5, preferably at least 0.1:5, in particular at least 0.3:5, and/or at most 0.9:5, preferably at most 0.5:5 and, in particular, at most 0.3:5.
7 . The coupling element of claim 1 , wherein a transition between a tip circle diameter and the tooth flank is rounded.
8 . The coupling element of claim 6 , wherein a rounded tip region extends over at least 20% of a triangle height and/or of the tooth length.
9 . The coupling element of claim 1 , wherein the coupling element is a hub element.
10 . The coupling element of claim 9 , wherein the hub element is designed as a one-piece element with a wheel flange and/or with an inner ring raceway and, as a wheel bearing unit.
11 . A drive unit, comprising:
a hub element as claimed in claim 10 , and
a cardan shaft or an intermediate element connected to the cardan shaft,
wherein the cardan shaft has a spur countertoothing which, in an assembled state, engages into the spur toothing of the hub element for a rotationally fixed connection.
12 . The drive unit of claim 11 , wherein the spur countertoothing has straight tooth flanks.
13 . The coupling clement of claim 7 , wherein the transition between the tip circle diameter and the tooth flank has a radius of 0.1 to 3 mm.