IP Library › Granted Patent US 11,841,031
Granted Patent B2
US 11,841,031 · App. 17/249,416 · Granted Dec 12, 2023

Compressor sensor mount

Inventors: Andrew Zug (Costa Mesa, CA); Amanda Webb (San Pedro, CA); Michael Leighty (Westminster, CA)
Assignee: Honeywell International Inc.
F04D29/4213F04D27/00F04D29/083F04D29/441F25B41/31F25B49/02F25B2400/07F25B2600/2513F25B2700/21151
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Quick Facts
Patent No.
US 11,841,031
App. No.
17/249,416
Granted
Dec 12, 2023
Kind
B2
Abstract

The disclosed technology generally relates to a compressor housing that includes a main housing portion and an end housing portion. The main housing portion is configured to house a compressor motor and an inlet housing. The inlet housing is configured to receive vapor refrigerant downstream of the compressor motor. The main housing portion and the end housing portion are configured to interface at a mating surface of the respective housing portions and define a volume. The end housing portion includes a sensor cavity extending into the volume toward an opening of the inlet housing.

Claims (24)

1. A compressor housing of a centrifugal compressor, the compressor housing comprising:

a main housing portion configured to house a compressor motor and an inlet housing, wherein the inlet housing is configured to receive vapor refrigerant downstream of the compressor motor; and

an end housing portion,

wherein the main housing portion and the end housing portion are configured to interface at a mating surface of the respective housing portions and define a volume, and

wherein the end housing portion includes a sensor cavity extending into the volume toward an opening of the inlet housing,

wherein the sensor cavity is defined by a sensor cavity wall separating the sensor cavity from the volume and comprising an inner surface external to the volume and an external surface in fluid communication with the volume.

2. The compressor housing of claim 1 , wherein sensor cavity is configured to removably affix a temperature sensor at least partially within the sensor cavity and external to the volume.

3. The compressor housing of claim 2 , wherein the sensor is one of a thermistor, a thermocouple, or a resistance temperature detector.

4. The compressor housing of claim 2 , wherein the sensor cavity is configured to allow the temperature sensor to be removed while maintaining a hermetic seal between the main housing portion and the end housing portion.

5. The compressor housing of claim 2 , wherein the sensor cavity is configured to position the temperature sensor within a volume nearer to the opening of the inlet housing than to an inner surface of the end housing.

6. The compressor housing of claim 5 , wherein the sensor cavity is configured to form a hermetic seal with the end housing.

7. The compressor housing of claim 6 , wherein the end housing comprises a dome shape.

8. The compressor housing of claim 1 , wherein the end housing comprises at least one structure configured to guide vapor refrigerant toward the inlet housing.

9. A centrifugal compressor end housing comprising:

an end housing wall; and

at least one mating surface configured to interface at a mating surface of a main housing portion, the main housing portion configured to house an inlet housing, wherein the inlet housing is configured to receive vapor refrigerant downstream of a compressor motor;

wherein the main housing portion and the end housing wall define a volume, and

wherein the end housing wall includes a sensor cavity configured to extend into the volume toward an opening of the inlet housing,

wherein the sensor cavity is defined by a sensor cavity wall separating the sensor cavity from the volume and comprising an inner surface external to the volume and an external surface in fluid communication with the volume.

10. The centrifugal compressor end housing of claim 9 , wherein sensor cavity is configured to removably affix a temperature sensor at least partially within the sensor cavity and external to the volume.

11. The centrifugal compressor end housing of claim 10 , wherein the sensor cavity is configured to allow the temperature sensor to be removed while maintaining a hermetic seal between the main housing portion and the end housing portion.

12. The centrifugal compressor end housing of claim 10 , wherein the sensor cavity is configured to position the temperature sensor within a volume nearer to the opening of the inlet housing than to an inner surface of the end housing wall.

13. The centrifugal compressor end housing of claim 12 , wherein the sensor cavity is configured to form a hermetic seal with the end housing.

14. The centrifugal compressor end housing of claim 9 , wherein the centrifugal compressor end housing comprises a dome shape.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 2, 2021
From: ZUG, ANDREW; WEBB, AMANDA; LEIGHTY, MICHAEL
To: HONEYWELL INTERNATIONAL INC.
Reel/Frame 055455/0932 →
Continuity (3)
Provisional Application 63002806 · Mar 31, 2020
Provisional Application 62989455 · Mar 13, 2020
Related Publication 20210285463A1 · Sep 16, 2021
Cited By (2)
US 1,100,143 US 1,137,533