Brake Lining Arrangement, Method
20180347655 ยท 2018-12-06
Inventors
Cpc classification
F16D2069/0491
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16D2069/0441
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16D65/0979
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16D2069/0433
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16D2250/0061
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16D2200/0021
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16D2250/0084
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16D2069/0466
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16D69/0408
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
Abstract
A brake lining arrangement, in particular for a disk brake of a motor vehicle, has a rear plate and a friction lining that is connected to the rear plate. The rear plate has a bearing face on which the friction lining is placed. The rear plate also has a member configured for fastening the friction lining on the bearing face. The friction lining has at least one cutout that is configured as a blind bore. At least one connecting pin is arranged fixedly on the rear plate so as to project from the bearing face. The connecting pin is configured to engage at least substantially without play into the cutout.
Claims
1. A brake lining arrangement, comprising: a rear plate; and a friction lining connected to the rear plate, the rear plate having a bearing face on which the friction lining is placed and having a member configured to fasten the friction lining on the bearing face, wherein the friction lining has at least one cutout that is configured as a blind bore, at least one connecting pin is arranged fixedly on the rear plate so as to project from the bearing face, the connecting pin engaging at least substantially without play into the cutout.
2. The brake lining arrangement according to claim 1, wherein the connecting pin is pressed into the blind bore.
3. The brake lining arrangement according to claim 1, wherein the connecting pin is configured in one piece with the rear plate.
4. The brake lining arrangement according to claim 1, wherein the connecting pin is configured separately and is fastened either to or in the rear plate.
5. The brake lining arrangement according to claim 4, wherein the connecting pin is fastened to the rear plate in one or more of a positively locking manner, an integrally joined manner, and a non-positive manner.
6. The brake lining arrangement according to claim 1, wherein the connecting pin has at least one end section that faces the friction lining, and wherein one or more of the end section and the blind bore has a cylindrical or conical configuration.
7. The brake lining arrangement according to claim 1, wherein the connecting pin projects in sections from the rear plate on a side of the rear plate that faces away from the friction lining.
8. The brake lining arrangement according to claim 7, wherein at least the projecting section of the connecting pin has a cross section that differs from a circular shape.
9. The brake lining arrangement according to claim 7, further comprising one or more of at least one damping element and at least one spring element, the one or more of the at least one damping element and the at least one spring element being pushed onto the projecting section and fastened to the projecting section.
10. The brake lining arrangement according to claim 9, wherein the connecting pin is deformed plastically to respectively fasten the one or more of the at least one damping element and the at least one spring element.
11. The brake lining arrangement according to claim 1, wherein the connecting pin has at least one radially projecting or radially inwardly protruding contour element on a circumferential wall.
12. The brake lining arrangement according to claim 11, wherein the contour element has a punch mark or a notch.
13. The brake lining arrangement according to claim 1, wherein the rear plate and the friction lining are adhesively bonded to one another.
14. A method for producing a brake lining arrangement for a disc brake of a motor vehicle, comprising: connecting a rear plate to a friction lining by placing the friction lining on a bearing face of the rear plate, the friction lining being fastened on the bearing face, at least one cutout that is configured as a blind bore is configured in the friction lining; and fixedly arranging at least one connecting pin on the rear plate so as to project from the bearing face, the connecting pin engaging at least substantially without play into the cutout.
15. The brake lining arrangement according to claim 1, wherein the brake lining arrangement is configured for a disk brake of a motor vehicle.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0019] In the following text, the disclosure is to be described in greater detail using the drawings, in which:
[0020]
[0021]
[0022]
[0023]
DETAILED DESCRIPTION
[0024]
[0025] The rear plate 2 has a bearing face 4, onto which the friction lining 3 is placed. In addition, the brake lining arrangement 1 has means 5 for fastening the friction lining 3 on the bearing face 4. The friction lining 3 has at least one cutout 7 which is configured as a blind bore 6. At least one connecting pin 8 is arranged fixedly on the rear plate 2 so as to project from the bearing face 4, which connecting pin 8 engages without play into the blind bore 6 in the present case, and is preferably pressed into the blind bore 6.
[0026] An end section 9 of the connecting pin 8, which end section 9 faces the friction lining 3, and the blind bore 6, in particular that region 10 of the blind bore 6 which faces the end section 9 of the connecting pin 8, are in each case of cylindrical configuration in the present case, with the result that a connectibility of the connecting pin 8 and the friction lining 3 is ensured, which connectibility has an accurate fit and is therefore particularly stable. As an alternative, the end section 9 and the blind bore 6 or that region 10 of the blind bore 6 which faces the end section 9 are of conical configuration.
[0027] In accordance with the exemplary embodiment which is shown here, the connecting pin 8 is of separate configuration and is arranged in a positively locking manner with the rear plate 2, in particular in a connecting pin cutout 11 or through opening which is configured in the rear plate 2, in particular is pressed into it. The pressing of the connecting pin 8 into the connecting pin cutout 11 advantageously ensures a play-free and particularly secure positively locking connection of the connecting pin 8 to the rear plate 2. The configuration of the connecting pin cutout 11 in the rear plate 2 preferably takes place by way of a punching or drilling method. Laser cutting, milling or grinding can also be carried out to this end.
[0028] As an alternative, the connecting pin 8 is configured in one piece with the rear plate 2. Machining of the bearing face 4 of the rear plate 2, for example by means of a material-removing method, in particular a milling method, preferably takes place in order to configure the connecting pin 8 in one piece with the rear plate 2.
[0029] The brake lining arrangement 1 optionally additionally has a damping unit 12 which is arranged on a side of the rear plate 2, which side faces away from the friction lining 3. The damping unit 12 is, for example, a film or a metal sheet, and is configured to reduce or damp a formation of noise in the case of a braking operation.
[0030] In addition to the fastening of the friction lining 3 and the rear plate 2 by way of the connecting pins 8, it is optionally provided to adhesively bond the rear plate 2 and the friction lining 3 to one another by way of an adhesive medium 13, an adhesive layer in the present case.
[0031]
[0032] In the present case, the connecting pin 8 has at least one radially inwardly protruding contour element 15 (in the present case, a notch) on a circumferential wall 14. The contour element 15 is preferably configured on the circumferential wall 14 of an end section 16 of the connecting pin 8, which end section 16 is assigned to the rear plate 2. As an alternative, the contour element 15 is configured on the entire circumferential wall 14.
[0033] In the present case, the notching has a plurality of notches 17 which are arranged, in particular, in a manner which is distributed uniformly over the circumference of the connecting pin 8. In the present case, a respective notch 17 extends parallel to a longitudinal extent of the connecting pin 8, and has a predefinable length. The contour element 15 (in the present case, the notching) ensures an additional stabilization of the connection or fastening of the connecting pin 8 in the rear plate 2, in particular of the connecting pin 8 which is pressed into the rear plate 2.
[0034]
[0035]
[0036] As shown in
[0037] In accordance with the exemplary embodiment of
[0038]
[0039] As an alternative or in addition, the connecting pin 8 is riveted or can be riveted into the rear plate 2, the connecting pin 8 and/or the rear plate 2 preferably being of deformable configuration in order to produce a riveted connection. To this end, for example, the connecting pin 8 is first of all arranged in or pressed into the rear plate 2, at least one end section 9, 16 of the connecting pin 8, which end section 9, 16 protrudes out of the rear plate 2, subsequently being deformed in such a way that a collar is configured which lies on a surface, in particular a front side surface 21 and/or rear side surface 22 of the rear plate 2.
[0040]
[0041] The connecting pin cutout 11 preferably has a constant diameter, the diameter of the connecting pin cutout 11 being smaller than the diameter of the connecting pin 8, in particular in the region of the conically shaped end section 16. The connecting pin cutout 11 is therefore of undersized configuration in comparison with the connecting pin 8. During a pressing of the connecting pin 8 into the rear plate 2, a radially and axially acting force component, in particular, on the inner circumferential wall 18 of the connecting pin cutout 11 results from the conically shaped end section 16, which force component deforms the inner circumferential wall 18 of the connecting pin cutout 11 radially and axially. This results in a particularly stable positively locking fastening or anchoring of the connecting pin 8 in the connecting pin cutout 11 or rear plate 2.
[0042] As an alternative, the inner circumferential wall 18 of the connecting pin cutout 11 or the rear plate 2 has a conical deformation which is of complementary configuration with respect to the conical deformation of the connecting pin 8.
[0043]
[0044] As an alternative or in addition to the pressing of the connecting pin 8 into the rear plate 2, it is provided to adhesively bond the connecting pin 8 to the rear plate 2, in particular the inner circumferential wall 18 of the connecting pin cutout 11. To this end, an adhesive medium 13 or adhesive is applied on the rear plate 2 and/or inner circumferential wall 18 either before or after the introduction of the connecting pin 8 into the rear plate 2. The adhesive medium 13 is preferably sprayed on, rolled on or applied by way of a dipping or pouring method. Spraying on has the advantage that it can also coat three-dimensional structures, that is to say it can also coat a connecting pin 8 which has already been introduced or pressed in. Rolling on is advantageous in the case of an application of the adhesive medium 13 before a connecting pin 8 is introduced or pressed into the rear plate 2.
[0045] In order to connect the friction lining 3 and the rear plate 2, the friction lining 3 is preferably pressed onto the rear plate 2 at a predefinable temperature, and is subsequently cross-linked or hardened, for example, in an oven at a further predefinable temperature.
[0046] The disclosure is not restricted to the described exemplary embodiments. Rather, all proposed embodiments and possibilities for fastening and/or configuring the connecting pin 8 can be combined.
[0047] By way of example,
[0048] To this end, in accordance with
[0049] In accordance with
[0050]
[0051] The brake lining arrangement 1 has the advantage that it can be produced in a simple way, in particular inexpensively, and ensures a secure connection between the friction lining 3 and the rear plate 2. Here, in particular, as many blind bores 6 as desired can be configured in the friction lining 3 in a predefinable arrangement, with the result that brake lining arrangements 1 can be produced which are adapted individually, in particular are adapted individually to a corresponding motor vehicle.