IP Library Granted Patent US 10,801,566
Granted Patent B2
US 10,801,566 · App. 16/188,704 · Granted Oct 13, 2020

Caliper guide assembly

Inventors: Martin P. Taylor (Gwent, GB); Sean Cleary (Gwent, GB); Matthew McGinn (Gwent, GB); Refaat Malki (Gwent, GB)
Assignee: Meritor Heavy Vehicle Braking Systems (UK) Limited
F16D55/22655F16D55/227F16D65/0087F16D66/025F16D66/026F16D66/028F16D2055/007F16D2250/0084
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Quick Facts
Patent No.
US 10,801,566
App. No.
16/188,704
Granted
Oct 13, 2020
Kind
B2
Abstract

A caliper guide assembly for a heavy vehicle disc brake. The caliper guide assembly may include a wear sensor arranged to detect the position of a guide pin in relation to a guide bore. The guide pin and a guide surface may have different cross sectional profiles to define at least one void therebetween. The wear sensor may be at least partially accommodated within the void.

Claims (33)

1. A caliper guide assembly for a heavy vehicle disc brake, the caliper guide assembly comprising:

a guide pin having a guide portion;

a guide bore having a guide surface arranged to receive the guide portion and permit relative axial sliding thereof; and

a wear sensor arranged to detect a position of the guide pin in relation to the guide bore;

wherein a void is provided radially between the guide portion and the guide bore and the wear sensor is at least partially accommodated within the void and is radially positioned between the guide portion and the guide bore.

2. The caliper guide assembly of claim 1 wherein the guide portion and the guide surface have different cross-sectional profiles to define the void along at least part of their length.

3. The caliper guide assembly of claim 1 wherein the guide surface has a non-circular cross section.

4. The caliper guide assembly of claim 3 wherein the guide surface has an oval cross section.

5. The caliper guide assembly of claim 1 wherein the guide pin has a substantially circular outer profile.

6. The caliper guide assembly of claim 5 wherein the guide pin has a substantially constant outer profile.

7. The caliper guide assembly of claim 1 wherein the guide surface is a surface of a bush separately mounted to the guide bore.

8. The caliper guide assembly of claim 1 wherein the guide pin further comprises a mounting portion operable to mount the caliper guide assembly to a brake carrier of the heavy vehicle disc brake.

9. The caliper guide assembly of claim 1 wherein the wear sensor is a Hall Effect sensor or an optical sensor.

10. The caliper guide assembly of claim 1 wherein the guide pin has a substantially circular outer profile and the guide surface has a non-circular cross section such that the void is defined radially between the guide portion and the guide surface, and wherein the wear sensor is at least partially accommodated between the guide portion and the guide surface.

11. The caliper guide assembly of claim 1 wherein the wear sensor is at least partially accommodated within the guide bore and receives the guide pin.

12. A heavy vehicle disc brake comprising:

a caliper guide assembly that includes:

a guide pin having a guide portion;

a guide bore having a guide surface arranged to receive the guide portion and permit relative axial sliding thereof; and

a wear sensor arranged to detect a position of the guide pin in relation to the guide bore;

wherein a void is provided radially between the guide portion and the guide bore and the wear sensor is at least partially accommodated within the void and is radially positioned between the guide portion and the guide bore.

13. The heavy vehicle disc brake of claim 12 wherein the heavy vehicle disc brake further comprises a second caliper guide assembly.

14. The heavy vehicle disc brake of claim 13 wherein the second caliper guide assembly comprises a second guide pin having a second guide portion and a second guide bore having a second guide surface, wherein the second guide portion and the second guide surface have substantially the same cross-sectional profiles.

15. The heavy vehicle disc brake of claim 12 wherein the guide pin has a substantially circular outer profile and the guide surface has a non-circular cross section such that the void is defined radially between the guide portion and the guide surface, and wherein the wear sensor is at least partially accommodated between the guide portion and the guide surface.

16. The heavy vehicle disc brake of claim 12 wherein the wear sensor is at least partially accommodated within the guide bore and receives the guide pin.

17. A caliper guide assembly for a heavy vehicle disc brake, the caliper guide assembly comprising:

a guide pin having a guide portion;

a guide bore having a guide surface arranged to receive the guide portion and permit relative axial sliding thereof; and

a wear sensor arranged to detect a position of the guide pin in relation to the guide bore;

wherein a void accessible from an opening of the guide bore is provided within the caliper guide assembly and the wear sensor is at least partially located within the void and is radially positioned between the guide portion and the guide bore.

18. The caliper guide assembly of claim 17 wherein the guide pin has a recess, and the void is at least partially provided within the recess of the guide pin.

19. The caliper guide assembly of claim 17 wherein the guide pin has a substantially circular outer profile and the guide surface has a non-circular cross section such that the void is defined radially between the guide portion and the guide surface, and wherein the wear sensor is at least partially accommodated between the guide portion and the guide surface.

20. The caliper guide assembly of claim 17 wherein the wear sensor is at least partially accommodated within the guide bore and receives the guide pin.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 13, 2018
From: TAYLOR, MARTIN P.; CLEARY, SEAN; MCGINN, MATTHEW; MALKI, REFAAT
To: MERITOR HEAVY VEHICLE BRAKING SYSTEMS (UK) LIMITED
Reel/Frame 047509/0509 →
Priority Claims (1)
EP 17204446 · Nov 29, 2017 · regional
Continuity (1)
Related Publication 20190162256A1 · May 30, 2019
Cited By (1)
US 12,589,723