DISC BRAKE FOR A COMMERCIAL VEHICLE
20210172487 ยท 2021-06-10
Inventors
Cpc classification
F16D65/095
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16D65/12
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16D65/18
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16D55/227
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16D65/0087
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16D2055/0016
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16D2200/003
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16D55/226
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F16D65/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16D55/226
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16D65/095
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16D65/12
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A disc brake for commercial vehicle includes a brake caliper and brake pads for clamping the brake disc. The brake caliper has a first inside space with an opening on a side facing the brake disc for receiving a clamping device, and the brake caliper has a second inside space for receiving the brake disc. The brake caliper and brake pads have advantages in terms of installation space and is lightweight and reduces production costs. The brake caliper includes clamping-side lugs and reaction-side lugs. The lugs on each side define a channel for receiving the brake pads for each side. The brake pads include supporting surfaces and bearing surfaces on their perimeter that correspond to the arrangement of the lugs. The lugs on the clamping side define an L-shape. The axial length of supporting surfaces of the clamping side brake pad is shorter than that of the clamping-side lugs.
Claims
1. A disc brake (1) for vehicles, the disc brake comprising: a brake caliper (2), a clamping-side brake pad (3), and a reaction-side brake pad (3a) for clamping a brake disc (6), wherein the brake caliper (2) defines a first inside space (4) for receiving a clamping device (7), the first inside space (4) having an opening (5) on a side facing the brake disc (6), wherein the brake caliper (2) defines a second inside space (8) for receiving the brake disc (6), wherein the brake caliper (2) includes, in the second inside space (8), clamping-side lugs (9, 9a) for receiving the clamping-side brake pad (3) and reaction-side lugs (9b, 9bb, 9c, 9cc) for receiving the reaction-side brake pad (3a).
2. The disc brake (1) as claimed in claim 1, wherein the clamping-side lugs (9, 9a) are arranged opposite one another and form a clamping-side pad carrier channel (10) therebetween for receiving the clamping-side brake pad (3), and wherein the reaction-side lugs (9b, 9bb, 9c, 9cc) are arranged opposite one another and form a reaction-side pad carrier channel (10a) for receiving the reaction-side brake pad (3a).
3. The disc brake (1) as claimed in claim 1, wherein the brake caliper (2) has first and second axial cross-members (11, 11a), and two sub-regions (12, 12a) of the first axial cross-member (11) located in the area of the second inside space (8) include one of the clamping side lugs and one of the reaction side lugs (9a, 9c) and two sub-regions (12b, 12c) of the second axial cross-member (11a) located in the area of the second inside space (8) include one of the clamping side lugs and one of the reaction side lugs (9, 9b).
4. The disc brake (1) as claimed in claim 1, wherein the clamping side lugs (9, 9a) are L-shaped.
5. The disc brake (1) as claimed in claim 1, wherein the brake caliper (2) and the lugs (9, 9a; 9b, 9bb, 9c, 9cc) are formed from one component.
6. The disc brake (1) as claimed in claim 5, wherein the component is a cast part, an aluminum component, or a component formed from a composite material.
7. The disc brake (1) as claimed in claim 1, wherein the first inside space (4) is configured to receive an axially arranged clamping device (7).
8. The disc brake as claimed in claim 1, wherein the clamping-side brake pad (3) has, on a perimeter thereof, supporting surfaces (13, 13a) and bearing surfaces (21, 21a) for arrangement on the clamping-side lugs (9, 9a), and wherein the reaction-side brake pad (3a) has, on a perimeter thereof, supporting surfaces (13b, 13c) and bearing surfaces (21b, 21c) for arrangement on the reaction-side lugs (9b, 9bb, 9c, 9cc).
9. The disc brake (1) as claimed in claim 8, wherein the supporting surfaces (13, 13a) of the clamping-side brake pad (3) lie perpendicularly to the axial axis (A) on the clamping-side lugs (9, 9a) and the bearing surfaces (21, 21a) of the clamping side brake pad (3) lie radially on the clamping side lugs (9, 9a), and wherein the supporting surfaces (13b, 13c) of the reaction-side brake pads (3a) lie perpendicularly to the axial axis (A) on the reaction-side lugs (9b, 9c) and wherein the bearing surfaces (21b, 21c) of the clamping-side brake pad (3a) lie radially on the reaction-side lugs (9b, 9bb, 9c, 9cc).
10. The disc brake (1) as claimed in claim 8, wherein an axial length (Lx) of the supporting surfaces (13, 13a) of the clamping-side brake pad (3) is smaller than an axial length (Ly) of the clamping-side lugs (9, 9a).
11. The disc brake (1) as claimed in claim 10, wherein the axial length (Ly) of the clamping-side lugs (9, 9a) is defined by the sum of the axial length (Lx) of the supporting surfaces (13, 13a) of the clamping-side brake pad (3), a degree of wear (X) of the reaction-side brake pad (3a) and a degree of wear (Y) of the brake disc (6).
12. The disc brake (1) as claimed in claim 1, wherein the brake caliper (2) includes a bolt guide (15, 15a) having a bolt guide cap (18, 18a) arranged coaxially on the bolt guide (15, 15a) of the brake caliper (2).
13. The disc brake (1) as claimed in claim 12, wherein the bolt guide cap (18, 18a) is fastened to the bolt guide (15, 15a) via a screw connection or a clip connection.
14. The disc brake (1) as claimed in claim 1, wherein the reaction side lugs (9b, 9c, 9bb, 9cc) include a pair of first reaction-side lugs (9b, 9c) on opposite lateral sides of the axis (A) and a pair of second reaction-side lugs (9bb, 9cc) on opposite lateral sides of the axis (A).
15. The disc brake (1) as claimed in claim 14, wherein the first and second reaction side lugs (9b, 9bb) on a first lateral side of the axis (A) support a first lateral side of the reaction-side brake pad (3a) and the first and second reaction side lugs (9c, 9cc) on a second lateral side of the axis (A) support a second lateral side of the reaction-side brake pad (3a).
16. The disc brake (1) as claimed in claim 14, wherein the first reaction side lugs (9b, 9c) are arranged at a transverse angle relative to the second reaction-side lugs.
17. The disc brake (1) as claimed in claim 16, wherein the transverse angle is a 90 degree angle.
18. The disc brake (1) as claimed in claim 16, wherein the transverse angle matches an angle as measured between a bearing surface (21b, 21c) and a support surface (13b, 13c) of the reaction-side brake pad.
19. The disc brake (1) as claimed in claim 14, wherein the first reaction-side lugs support the reaction-side brake pad (3a) in a horizontal direction of the disc brake (1) and the second reaction-side lugs (9bb, 9cc) support the reaction side brake pad (3a) in a vertical direction of the disc brake
20. The disc brake (1) as claimed in claim 14, wherein the first reaction-side lugs (9b, 9c) and the second reaction-side lugs (9bb, 9cc) combine to define a pair of L-shapes.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0018] Selected exemplary embodiments of the invention will be explained herein below by way of the accompanying figures, in which:
[0019]
[0020]
[0021]
[0022]
[0023]
[0024]
[0025]
DETAILED DESCRIPTION OF THE DRAWINGS
[0026]
[0027] Lugs 9, 9a, 9b, 9bb, 9c, 9cc are formed from the sub-regions, where the lug 9bb and the lug 9cc are shown in
[0028] The brake caliper 2 additionally has two bolt guides 15, 15a, which are described in greater detail in
[0029] A detailed view of the clamping-side brake pad 3 and of the reaction-side brake pad 3a is shown in
[0030] In the case of the clamping-side brake pad 3, the axial length Lx of the supporting surfaces 13, 13a is smaller than the axial length Ly of the lugs 9, 9a (
[0031]
[0032] Furthermore, the axial lengthening of the clamping side lugs 9, 9a, as compared to the reaction-side lugs 9b, 9bb, 9c, 9cc, by the pad wear X of the brake pad 3a (
[0033] In
[0034] While the above description constitutes the preferred embodiments of the present invention, it will be appreciated that the invention is susceptible to modification, variation and change without departing from the proper scope and fair meaning of the accompanying claims.