IP Library › Granted Patent US 11,313,426
Granted Patent B2
US 11,313,426 · App. 16/929,596 · Granted Apr 26, 2022

Cooling ducts for disc brake caliper and method of manufacture thereof

Inventors: Andrew Charles Smith (Warwickshire, GB); Stephen James Hodgkins (Leicestershire, GB); Richard James Humble (Leicestershire, GB)
Assignee: ALCON COMPONENTS LIMITED
F16D65/847B60T5/00F16D65/0068F16D65/78F16D65/84F16D2065/788F16D2065/789F16D2250/00
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 11,313,426
App. No.
16/929,596
Granted
Apr 26, 2022
Kind
B2
Abstract

The present invention relates to a disc brake caliper body comprising a mounting side bracket and a non-mounting side bracket extending along a circumferential direction of the body, each bracket being configured to hold at least one brake pad. In order to provide improved cooling efficiency while maintaining the required stability of the brake caliper, the caliper body further comprises at least one cooling duct formed by additive manufacturing, at least one cooling duct being an integral part of the caliper body.

Claims (33)

1. A disc brake caliper body comprising:

a mounting side bracket and a non-mounting side bracket extending along a circumferential direction of the body, each bracket being configured to hold at least one brake pad, and

at least one cooling duct including supplementary structures formed by additive manufacturing, the cooling duct being an integral part of the brake caliper body;

wherein the disc brake caliper body comprises a first end bridge arranged and configured to connect leading ends of the brackets and a second end bridge arranged and configured to connect trailing ends of the brackets;

wherein the disc brake caliper body comprises a central bridge arranged between the first and second end bridges, the cooling duct extending at least partly through the central bridge; and

wherein at least parts of the supplementary structures comprise a plurality of vanes, and wherein the vanes extend in an undulating manner along the length of the cooling duct.

2. The disc brake caliper body of claim 1 , wherein the cooling duct extends between laterally inner faces of the mounting and non-mounting side brackets.

3. The disc brake caliper body of claim 2 , wherein the cooling duct extends between a laterally outer face of the mounting side brackets and cylinder housings of the non-mounting side bracket.

4. The disc brake caliper body of claim 3 , wherein the cooling duct comprises a fluid inlet arranged at the laterally outer face of the mounting side bracket at a radially outer end of the caliper body, and wherein the cooling duct comprises a fluid outlet located at a radially inner end of the caliper body.

5. A disc brake caliper body comprising:

a mounting side bracket and a non-mounting side bracket extending along a circumferential direction of the body, each bracket being configured to hold at least one brake pad, a first end bridge arranged and configured to connect leading ends of the brackets, a second end bridge arranged and configured to connect trailing ends of the brackets and a central bridge arranged between the first and second end bridges,

at least one cooling duct formed by additive manufacturing, the cooling duct being an integral part of the brake caliper body, the cooling duct extending at least partly through the central bridge

wherein the cooling duct defines a cavity for conveying cooling fluid, the cavity comprising supplementary structures extending from an inner surface of the cooling duct, and wherein the structures are formed by additive manufacturing; and

wherein at least parts of the supplementary structures comprise a plurality of vanes, and wherein the vanes extend in an undulating manner along the length of the cooling duct.

6. The disc brake caliper body of claim 5 , wherein at least parts of the supplementary structures comprise a lattice structure having a partial skin, and wherein the lattice structure has a bulk density of 10% to 50%, more preferably 10% to 30%.

7. The disc brake caliper body of claim 6 , wherein at least parts of the supplementary structures comprise a lattice structure having a partial skin, and wherein the lattice structure has a bulk density of 10% to 30%.

8. The disc brake caliper body of claim 7 , wherein the cooling duct comprises a varying cross-sectional area along its length.

9. The disc brake caliper body of claim 5 , wherein the cooling duct comprises a varying cross-sectional area along its length.

10. A disc brake caliper body comprising:

a mounting side bracket and a non-mounting side bracket extending along a circumferential direction of the body, each bracket being configured to hold at least one brake pad, and

at least one cooling duct including supplementary structures formed by additive manufacturing, the cooling duct being an integral part of the brake caliper body;

wherein the disc brake caliper body comprises a first end bridge arranged and configured to connect leading ends of the brackets and a second end bridge arranged and configured to connect trailing ends of the brackets;

wherein the disc brake caliper body comprises a central bridge arranged between the first and second end bridges, the cooling duct extending at least partly through the central bridge; and

wherein at least parts of the supplementary structures comprise a plurality of column-shaped reinforcement members extending in a substantially radial direction of the caliper body.

11. The disc brake caliper body of claim 10 , wherein the cooling duct extends between laterally inner faces of the mounting and non-mounting side brackets.

12. The disc brake caliper body of claim 11 , wherein the cooling duct extends between a laterally outer face of the mounting side brackets and cylinder housings of the non-mounting side bracket.

13. The disc brake caliper body of claim 12 , wherein the cooling duct comprises a fluid inlet arranged at the laterally outer face of the mounting side bracket at a radially outer end of the caliper body, and wherein the cooling duct comprises a fluid outlet located at a radially inner end of the caliper body.

14. A disc brake caliper body comprising:

a mounting side bracket and a non-mounting side bracket extending along a circumferential direction of the body, each bracket being configured to hold at least one brake pad, a first end bridge arranged and configured to connect leading ends of the brackets, a second end bridge arranged and configured to connect trailing ends of the brackets and a central bridge arranged between the first and second end bridges,

at least one cooling duct formed by additive manufacturing, the cooling duct being an integral part of the brake caliper body, the cooling duct extending at least partly through the central bridge

wherein the cooling duct defines a cavity for conveying cooling fluid, the cavity comprising supplementary structures extending from an inner surface of the cooling duct, and wherein the structures are formed by additive manufacturing; and

wherein at least parts of the supplementary structures comprise a plurality of column shaped reinforcement members extending in a substantially radial direction of the caliper body.

15. The disc brake caliper body of claim 14 , wherein at least parts of the supplementary structures comprise a lattice structure having a partial skin, and wherein the lattice structure has a bulk density of 10% to 30%.

Priority Claims (1)
GB 1618402 · Oct 27, 2016 · national
Continuity (2)
Division 15792072 · Oct 24, 2017
Related Publication 20200347899A1 · Nov 5, 2020
Cited By (1)
US 12,553,482