Wheel bearing outer ring
11614123 · 2023-03-28
Assignee
Inventors
Cpc classification
F16C35/067
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C2326/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C35/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C33/58
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
Abstract
A wheel bearing outer ring with a plurality of fastening elements are configured to be fixed to the wheel bearing outer ring to a knuckle of a car are arranged at a radial outer side of the wheel bearing outer ring. A view of the wheel bearing outer ring with a line of vision being a central axis of the wheel bearing outer ring at least one angle between a first one of the fastening elements and a second one of the fastening elements, which are neighbouring with respect to the circumferential direction of the wheel bearing outer ring, differs from an angle between a third one of the fastening elements and one of the fastening elements, which is neighbouring to the third one of the fastening elements with respect to the circumferential direction. All the angles are measured with respect to the central axis and in the circumferential direction.
Claims
1. A wheel bearing outer ring comprising: at least three fastening elements that are configured to fix the wheel bearing outer ring to a knuckle of a car and which are arranged at a radial outer side of the wheel bearing outer ring; the wheel bearing outer ring has a central axis; wherein when viewing the wheel bearing outer ring from a direction along the central axis a vertical axis is defined between the central axis and a fixation point of a middle located one of the three fastening elements such that a first angle is formed between the vertical axis and a line extending radially outwardly from an intersection of the vertical axis and the central axis to a second fixation point in a middle of one of the other two fastening elements; wherein a second angle is formed between the vertical axis and a second line extending radially outwardly from an intersection of the vertical axis and the central axis to a third fixation point in a middle of the other of the two fastening elements; and wherein the first angle and the second angle are different, a first radial outer surface of the wheel bearing outer ring along the first angle having a central portion that is concave and a second radial outer surface of the wheel bearing outer ring along the second angle having a central portion that is concave.
2. The wheel bearing outer ring according to claim 1, wherein the number of the fastening elements is at most four.
3. The wheel bearing outer ring according to claim 1, wherein two of the fastening elements lie with respect to a radial direction of the wheel bearing outer ring approximately opposite to each other.
4. The wheel bearing outer ring according to claim 1, wherein the first angle and/or the second angle is less than forty degrees (40°).
5. The wheel bearing outer ring according to claim 1, wherein all of the fastening elements are intersected by at least one imaginary plane that is perpendicular to the central axis.
6. A structural unit comprising: a wheel bearing outer ring of claim 1, and a knuckle to which the wheel bearing outer ring is fixed.
7. A wheel bearing outer ring comprising: at least three fastening elements that are configured to fix the wheel bearing outer ring to a knuckle of a car and which are arranged at a radial outer side of the wheel bearing outer ring; the wheel bearing outer ring has a central axis; wherein when viewing the wheel bearing outer ring from a direction along the central axis a vertical axis is defined between the central axis and a fixation point of a middle located one of the three fastening elements such that a first angle is formed between the vertical axis and a line extending radially outwardly from an intersection of the vertical axis and the central axis to a second fixation point in a middle of one of the other two fastening elements; wherein a second angle is formed between the vertical axis and a second line extending radially outwardly from an intersection of the vertical axis and the central axis to a third fixation point in a middle of the other of the two fastening elements; and wherein the first angle and the second angle are different, a sum of the first angle and the second angle is less than ninety (90) degrees.
8. A wheel bearing outer ring comprising: at least three fastening elements that are configured to fix the wheel bearing outer ring to a knuckle of a car and which are arranged at a radial outer side of the wheel bearing outer ring; the wheel bearing outer ring has a central axis; wherein when viewing the wheel bearing outer ring from a direction along the central axis a vertical axis is defined between the central axis and a fixation point of a middle located one of the three fastening elements such that a first angle is formed between the vertical axis and a line extending radially outwardly from an intersection of the vertical axis and the central axis to a second fixation point in a middle of one of the other two fastening elements; wherein a second angle is formed between the vertical axis and a second line extending radially outwardly from an intersection of the vertical axis and the central axis to a third fixation point in a middle of the other of the two fastening elements; and wherein the first angle and the second angle are different, the first angle and the second angle differ by no more than twenty (20) percent.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) Further advantages result from the following drawing description. The drawings show an example of the invention. The drawings, description and claims contain numerous features in combination. It is advisable for the skilled person to look at the features individually and to combine them into useful further combinations.
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DETAILED DESCRIPTION OF SOME EMBODIMENTS
(6)
(7) The first fastening element 10 and the second fastening element 12 include a first angle 24. This angle and all further angels are measured with respect to the central axis 22. Each of the fastening elements 10, 12, 14, 16 comprises a central fixation point 30, 32, 34, 35. An angle between two fastening elements is always measured between their central fixation points. In a view of the wheel bearing outer ring with line of vision being the central axis 22 the first fastening element 10 and the second fastening element 12 include an angle 24. The angle 24 can be for example 34°. The fastening element 10 and the fastening element 12 are neighbouring with respect to a circumferential direction 26 of the wheel bearing outer ring, which means that with respect to the circumferential direction 26 there are no other fastening elements between the fastening elements 10, 12. Furthermore, the fastening element 14 and fastening element 16, which are also neighbouring with respect to the circumferential direction 26, include an angle 28. The angle 28 is different from the angle 24 and can be for example 146°. The fastening elements 10, 12, 14, 16 are the only fastening elements which are comprised by the wheel bearing outer ring
(8) Moreover, the fastening element 12 includes an angle 25 with the fastening element 14. The angle 25 can have a value of 34°. Therefore the angles 24 and 25 don't differ at all. The central fixation points 30, 32, 34 of the fastening elements 10, 12, 14 are with respect to the circumferential direction 26 positioned within an angle of 70°. The fastening element 12 and the fastening element 16 include an angle of 180° and lie therefore with respect to a radial direction 40 of the wheel bearing outer ring opposite to each other (
(9) The radial direction 40 is the direction in which the fastening element 12 extends. In a condition, in which the wheel bearing outer ring is assembled to a knuckle of a motor vehicle, which stands on a completely plain and horizontal underground, the radial direction 40 points vertically upwards.
(10) Each of the fastening elements extends in the view with the line of vision being the central axis 22 less than 40° in the circumferential direction 26. Moreover, all of the fastening elements 10, 12, 14, 16 lie in the same plane. Therefore an imaginary plane 38, which is perpendicular to the central axis 22, intersects all of the fastening elements 10, 12, 14, 16.
(11) The wheel bearing outer ring comprises at its radially inner side raceways 42, 44 for a rolling contact with rolling elements. In the shown embodiment the rolling elements are balls.
(12) The wheel bearing outer ring is in an assembled state a part of a hub bearing unit. Hub bearing units are allowing the rotation and the attachment of a wheel to a car suspension system. It is mainly subjected to flexion around the horizontal axis along the length of the car.
(13) In the case, in which the wheel bearing outer ring has to withstand a maximum load, the upper half of the wheel bearing outer ring has to withstand traction and the lower half of the wheel bearing outer ring has to withstand compressive strain. It was recognized that the efficiency of the wheel bearing outer ring is increased when the upper half comprises more fastening elements than the lower half.
(14) The arrangement of the fastening elements does not affect the geometry of the rest of the wheel bearing outer ring.