IP Library Granted Patent US 10,119,873
Granted Patent B2
US 10,119,873 · App. 14/486,157 · Granted Nov 6, 2018

Brake force sensor arrangement for a brake unit

Inventors: Glyn A. Finch, Jr. (Simpsonville, SC); Maria Koon (Greenville, SC); Peter D. Mathern (Greenville, SC)
Assignee: Westinghouse Air Brake Technologies Corporation
G01L5/28B60T17/00B60T17/18B60T17/22B60T17/221B60T17/223B60T17/228B61H5/00F16D66/00F16D66/027G01B5/00G01B5/0025G01B5/0028G01L5/00G01L5/225
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Quick Facts
Patent No.
US 10,119,873
App. No.
14/486,157
Granted
Nov 6, 2018
Kind
B2
Abstract

A brake force sensor arrangement for a brake unit includes a brake unit including a brake force application member; and a strain gage positioned on the brake force application member. The strain gage may be configured to measure the stress, strain, or stress and strain of the brake force application member. The stress, strain, or stress and strain of the brake force application member may be proportional to the brake force applied by the brake unit.

Claims (49)

1. A brake force sensor arrangement for a brake unit, comprising:

the brake unit comprising a brake force application member; and

a strain gage positioned on the brake force application member,

wherein the strain gage is configured to measure the stress and/or strain of the brake force application member;

wherein the stress and/or strain of the brake force application member is proportional to a brake force applied by the brake unit; and

wherein the brake force application member defines a recess on an outer surface thereof to hold the strain gage, and an aperture that houses a connector configured to send information from the strain gage to a notification device.

2. The brake force sensor arrangement as claimed in claim 1 ,

the brake force unit further comprising a disc brake unit; and

the brake force application member further comprising a lever rotatably positioned in the brake unit,

wherein the lever rotates relative to the brake unit to apply the braking force.

3. The brake force sensor arrangement as claimed in claim 2 , further comprising the notification device connected to the strain gage,

wherein information from the strain gage is directed to the notification device to identify the amount of brake force applied by the brake unit.

4. The brake force sensor arrangement as claimed in claim 2 , further comprising an environmental coating provided on the strain gage.

5. The brake force sensor arrangement as claimed in claim 1 ,

the brake unit further comprising a tread brake unit; and

the brake force application member further comprising a lever rotatably positioned in the brake unit,

wherein the lever rotates relative to the brake unit to apply the braking force.

6. The brake force sensor arrangement as claimed in claim 5 , further comprising the notification device connected to the strain gage,

wherein information from the strain gage is directed to the notification device to identify the amount of brake force applied by the brake unit.

7. The brake force sensor arrangement as claimed in claim 5 , further comprising an environmental coating provided on the strain gage.

8. A railway vehicle with a brake force sensor arrangement, comprising:

a railway vehicle comprising a brake unit, the brake unit comprising a brake force application member; and

a strain gage positioned on the brake force application member,

wherein the strain gage is configured to measure a stress and/or strain of the brake force application member,

wherein the stress and/or strain of the brake force application member is proportional to a brake force applied by the brake unit; and

wherein the brake force application member defines a recess on an outer surface thereof to hold the strain gage, and an aperture that houses a connector configured to send information of a notification device.

9. The railway vehicle as claimed in claim 8 ,

the brake unit further comprising a disc brake unit; and

the brake force application member further comprising a lever rotatably positioned in the brake unit,

wherein the lever rotates relative to the brake unit to apply the braking force.

10. The railway vehicle as claimed in claim 9 , further comprising the notification device connected to the strain gage,

wherein information from the strain gage is directed to the notification device to identify the amount of brake force applied by the brake unit.

11. The railway vehicle as claimed in claim 9 , further comprising an environmental coating provided on the strain gage.

12. The railway vehicle as claimed in claim 8 ,

the brake unit further comprising a tread brake unit; and

the brake force application member further comprising a lever rotatably positioned in the brake unit,

wherein the lever rotates relative to the brake unit to apply the braking force.

13. The railway vehicle as claimed in claim 12 , further comprising the notification device connected to the strain gage,

wherein information from the strain gage is directed to the notification device to identify the amount of brake force applied by the brake unit.

14. The railway vehicle as claimed in claim 12 , further comprising an environmental coating provided on the strain gage.

15. A method of measuring a brake force applied by a brake unit, comprising the steps of:

a) providing a brake unit comprising:

a brake force application member; and

a strain gage positioned on the brake force application member;

wherein the braking force application member defines a recess on an outer surface thereof to hold the strain gage, and an aperture that houses a connector configured to send information for a notification device;

b) applying the braking force using the brake force application member; and

c) measuring the stress and/or strain applied by the brake force application member using the strain gage,

wherein the stress and/or strain of the brake force application member is proportional to the brake force applied by the brake unit.

16. The method of measuring a brake force applied by the brake unit as claimed in claim 15 , further comprising the step of sending information relating to the stress and/or strain measured by the strain gage to the notification device.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 15, 2014
From: KOON, MARIA; MATHERN, PETER D.; FINCH, GLYN A., JR.
To: WESTINGHOUSE AIR BRAKE TECHNOLOGIES CORPORATION
Reel/Frame 033739/0415 →
Continuity (1)
Related Publication 20160076956A1 · Mar 17, 2016
Cited By (1)
US 12,486,880