IP Library › Granted Patent US 11,175,187
Granted Patent B2
US 11,175,187 · App. 16/055,841 · Granted Nov 16, 2021

Air temperature sensor having a bushing

Inventors: Gregory Lloyd Ashton (South Plymouth, NY); Jarodd Dan Goedel (Sherburne, NY); John Patrick Parsons (Afton, NY)
Assignee: Unison Industries, LLC
G01K1/14G01K1/08G01K13/02G01K13/028F01D17/085F05D2270/80G01K13/024
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Quick Facts
Patent No.
US 11,175,187
App. No.
16/055,841
Granted
Nov 16, 2021
Kind
B2
Abstract

An air temperature sensor for use on an aircraft can include a housing defining an interior and having a trailing edge, a temperature sensor having a distal end and located within the interior, a support tube surrounding at least a portion the temperature sensor, an element shroud surrounding at least a portion of support tube, and a bushing isolating the trailing edge of the housing from the distal end of temperature sensor.

Claims (37)

1. An air temperature sensor assembly, the air temperature sensor assembly comprising:

a temperature sensor having a first distal end;

a support tube surrounding the first distal end;

an element shroud having a second distal end and surrounding at least a portion of the support tube; and

a bushing spaced from the first distal end of the temperature sensor, comprising an annular wall defining an aperture, and coupled to the second distal end of the element shroud to thermally isolate the first distal end of the temperature sensor from the element shroud;

wherein the support tube is received in the aperture to center the support tube within the element shroud.

2. The air temperature sensor assembly of claim 1 wherein the bushing is press fit between the element shroud and the support tube.

3. The air temperature sensor assembly of claim 1 wherein the aperture extends through a length of the bushing.

4. The air temperature sensor assembly of claim 3 wherein the support tube is press fit into the aperture of the bushing.

5. The air temperature sensor assembly of claim 4 wherein the aperture stops at an end wall of the bushing.

6. The air temperature sensor assembly of claim 5 wherein an outer wall of the bushing is press fit into the second distal end of the element shroud.

7. The air temperature sensor assembly of claim 6 wherein the bushing further comprises a lip for acting as a stop for element shroud.

8. The air temperature sensor assembly of claim 1 wherein the bushing holds the support tube and element shroud in fixed relationship relative to one another.

9. The air temperature sensor assembly of claim 8 further comprising a gap between the support tube and element shroud.

10. The air temperature sensor assembly of claim 9 wherein the gap is uniform about a circumference of the support tube.

11. The air temperature sensor assembly of claim 1 wherein the element shroud further comprises at least one slot for allowing air flow to contact the temperature sensor.

12. An aircraft turbine engine, comprising:

a core having a compressor, combustor, and turbine sections in axial flow arrangement mounted in a casing;

a housing defining an interior and located in thermal communication with the core;

a temperature sensor having a first distal end and located within the interior;

a support tube surrounding at least a portion the temperature sensor;

an element shroud surrounding at least a portion of the support tube and terminating in a second distal end; and

a bushing spaced from the first distal end of the temperature sensor, comprising an annular wall defining an aperture and coupled to the second distal end of the element shroud, the bushing thermally isolating the housing from the first distal end of temperature sensor;

wherein the support tube is received in the aperture to center the support tube within the element shroud.

13. The aircraft turbine engine of claim 12 wherein the bushing is press fit between the element shroud and the support tube.

14. The aircraft turbine engine of claim 12 wherein the aperture extends through a length of the bushing.

15. The aircraft turbine engine of claim 14 wherein the support tube is press fit into the aperture of the bushing.

16. The aircraft turbine engine of claim 15 wherein the first distal end of the temperature sensor is spaced from an end wall of the bushing.

17. The aircraft turbine engine of claim 16 wherein an outer wall of the bushing is press fit into the second distal end of the element shroud.

18. The aircraft turbine engine of claim 17 wherein the bushing further comprises a lip for acting as a stop for element shroud.

19. An air temperature sensor assembly, the air temperature sensor assembly comprising:

a temperature sensor having a first distal end;

a shroud having a second distal end and surrounding at least a portion of the temperature sensor;

a support tube located within the shroud, surrounding the first distal end, and terminating in a third distal end; and

a bushing comprising an annular wall terminating in an end wall stopped by the second distal end and spaced from the temperature sensor, the annular wall defining an aperture for receiving the third distal end of the support tube;

wherein the annular wall centers the support tube and separates the second distal end of the element shroud from the third distal end of the support tube to define a gap for thermally isolating the temperature sensor from the element shroud.

20. The air temperature sensor assembly of claim 19 wherein the bushing holds the support tube and element shroud in fixed relationship relative to one another to define a gap between the support tube and element shroud, wherein the gap is uniform about a circumference of the support tube.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 6, 2018
From: ASHTON, GREGORY LLOYD; GOEDEL, JARODD DAN; PARSONS, JOHN PATRICK
To: UNISON INDUSTRIES, LLC
Reel/Frame 046564/0263 →
Continuity (1)
Related Publication 20200041352A1 · Feb 6, 2020