IP Library Granted Patent US 10,793,170
Granted Patent B2
US 10,793,170 · App. 15/766,856 · Granted Oct 6, 2020

Temperature sensor unit-equipped axle box device and temperature detecting device of railcar bogie

Inventors: Takehiro Nishimura (Kobe, JP); Yoshi Sato (Sanda, JP); Keiichiro Kamura (Kobe, JP); Masayuki Mitsue (Kobe, JP)
Assignee: KAWASAKI JUKOGYO KABUSHIKI KAISHA
B61K9/04B61F15/20F16C19/525G01K1/143G01K13/08G01K15/005F16C2326/10
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Quick Facts
Patent No.
US 10,793,170
App. No.
15/766,856
Granted
Oct 6, 2020
Kind
B2
Abstract

A temperature sensor unit-equipped axle box device of a railcar bogie includes: an axle box accommodating a bearing supporting an axle; a temperature sensor unit attached to the axle box and configured to detect a temperature of an outer ring of the bearing; and an elastic body configured to bias the temperature sensor unit in such a direction that the temperature sensor unit is pressed against the outer ring. The elastic body is elastically deformable so as to follow displacement of the temperature sensor unit around a rotation axis of the bearing.

Claims (59)

1. A temperature sensor unit-equipped axle box device of a railcar bogie,

the temperature sensor unit-equipped axle box device comprising:

an axle box accommodating a bearing configured to support an axle;

a temperature sensor unit attached to the axle box and configured to detect a temperature of an outer ring of the bearing; and

an elastic body configured to bias the temperature sensor unit in such a direction that the temperature sensor unit is pressed against the outer ring;

wherein the temperature sensor unit is displaceable relative to the axle box around a rotation axis of the bearing, and the elastic body is elastically deformable so as to follow displacement of the temperature sensor unit around the rotation axis of the bearing.

2. The temperature sensor unit-equipped axle box device according to claim 1 , wherein the temperature sensor unit includes a circular-arc heat receiving surface that is in surface contact with an outer peripheral surface of the outer ring.

3. The temperature sensor unit-equipped axle box device according to claim 1 , wherein the axle box includes a stopper portion configured to restrict displacement of the temperature sensor unit around the rotation axis to a predetermined range.

4. The temperature sensor unit-equipped axle box device according to claim 1 , wherein the temperature sensor unit includes therein a wireless transmission portion configured to transmit information regarding the detected temperature of the outer ring as a wireless signal.

5. The temperature sensor unit-equipped axle box device according to claim 1 , further comprising a fixing bracket detachably fixed to the axle box from an outside, wherein:

the axle box includes an opening;

the temperature sensor unit is attached to the fixing bracket through the elastic body; and

in a state where a gap is formed between the temperature sensor unit and the axle box in a direction in which the elastic body generates elastic force, the temperature sensor unit extends from the outside of the axle box through the opening and contacts the outer ring of the bearing.

6. A temperature sensor unit-equipped axle box device of a railcar bogie,

the temperature sensor unit-equipped axle box device comprising:

an axle box accommodating a bearing configured to support an axle;

a temperature sensor unit attached to the axle box and configured to detect a temperature of an outer ring of the bearing; and

an elastic body configured to bias the temperature sensor unit in such a direction that the temperature sensor unit is pressed against the outer ring;

wherein:

the elastic body is elastically deformable so as to follow displacement of the temperature sensor unit around the rotation axis of the bearing;

the axle box includes

a first axle box element covering a first region of an outer peripheral surface of the outer ring and

a second axle box element covering a second region of the outer peripheral surface of the outer ring;

the first axle box element includes

a coupling portion coupled to a bogie frame and

a spring receiving portion supporting a spring interposed between the spring receiving portion and the bogie frame;

the second axle box element is detachably attached to the first axle box element; and

the temperature sensor unit is attached to the second axle box element.

7. The temperature sensor unit-equipped axle box device according to claim 6 , wherein the temperature sensor unit includes a circular-arc heat receiving surface that is in surface contact with an outer peripheral surface of the outer ring.

8. The temperature sensor unit-equipped axle box device according to claim 6 , wherein the axle box includes a stopper portion configured to restrict displacement of the temperature sensor unit around the rotation axis to a predetermined range.

9. The temperature sensor unit-equipped axle box device according to claim 6 , wherein the temperature sensor unit includes therein a wireless transmission portion configured to transmit information regarding the detected temperature of the outer ring as a wireless signal.

10. The temperature sensor unit-equipped axle box device according to claim 6 , further comprising a fixing bracket detachably fixed to the axle box from an outside, wherein:

the axle box includes an opening;

the temperature sensor unit is attached to the fixing bracket through the elastic body; and

in a state where a gap is formed between the temperature sensor unit and the axle box in a direction in which the elastic body generates elastic force, the temperature sensor unit extends from the outside of the axle box through the opening and contacts the outer ring of the bearing.

11. A temperature sensor unit-equipped axle box device of a railcar bogie,

the temperature sensor unit-equipped axle box device comprising:

an axle box accommodating a bearing configured to support an axle;

a temperature sensor unit attached to the axle box and configured to detect a temperature of an outer ring of the bearing; and

an elastic body configured to bias the temperature sensor unit in such a direction that the temperature sensor unit is pressed against the outer ring;

wherein:

the elastic body is elastically deformable so as to follow displacement of the temperature sensor unit around the rotation axis of the bearing;

the axle box is divided into an upper axle box element supporting a load applied from a bogie frame and a lower axle box element located at a lower side of the upper axle box element and attachable to and detachable from the upper axle box element; and

the temperature sensor unit is attached to the lower axle box element.

12. The temperature sensor unit-equipped axle box device according to claim 11 , wherein the temperature sensor unit includes a circular-arc heat receiving surface that is in surface contact with an outer peripheral surface of the outer ring.

13. The temperature sensor unit-equipped axle box device according to claim 11 , wherein the axle box includes a stopper portion configured to restrict displacement of the temperature sensor unit around the rotation axis to a predetermined range.

14. The temperature sensor unit-equipped axle box device according to claim 11 , wherein the temperature sensor unit includes therein a wireless transmission portion configured to transmit information regarding the detected temperature of the outer ring as a wireless signal.

15. The temperature sensor unit-equipped axle box device according to claim 11 , further comprising a fixing bracket detachably fixed to the axle box from an outside, wherein:

the axle box includes an opening;

the temperature sensor unit is attached to the fixing bracket through the elastic body; and

in a state where a gap is formed between the temperature sensor unit and the axle box in a direction in which the elastic body generates elastic force, the temperature sensor unit extends from the outside of the axle box through the opening and contacts the outer ring of the bearing.

16. A temperature detecting device of a railcar bogie,

the temperature detecting device comprising:

a temperature sensor unit configured to detect a temperature of an outer ring of a bearing through an opening of an axle box accommodating the bearing, the bearing supporting configured to support an axle; and

an elastic body configured to bias the temperature sensor unit in such a direction that the temperature sensor unit is pressed against the ring;

wherein the temperature sensor unit is displaceable relative to the axle box around a rotation axis of the bearing, and the elastic body is elastically deformable so as to follow displacement of the temperature sensor unit around the rotation axis of the bearing.

17. The temperature detecting device according to claim 16 , the temperature detecting device further comprising a fixing bracket detachably fixed to the axle box from an outside, wherein:

the temperature sensor unit is attached to the fixing bracket through the elastic body; and

in a state where a gap is formed between the temperature sensor unit and the axle box in a direction in which the elastic body generates elastic force, the temperature sensor unit extends from the outside of the axle box through the opening and contacts the outer ring of the bearing.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 18, 2022
From: KAWASAKI JUKOGYO KABUSHIKI KAISHA
To: KAWASAKI RAILCAR MANUFACTURING CO.,LTD.
Reel/Frame 060107/0954 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 23, 2018
From: NISHIMURA, TAKEHIRO; SATO, YOSHI; KAMURA, KEIICHIRO; MITSUE, MASAYUKI
To: KAWASAKI JUKOGYO KABUSHIKI KAISHA
Reel/Frame 046890/0126 →
Priority Claims (2)
JP 2015-200001 · Oct 8, 2015 · national
JP 2016-108662 · May 31, 2016 · national
Continuity (1)
Related Publication 20180281828A1 · Oct 4, 2018