IP Library Granted Patent US 10,571,058
Granted Patent B2
US 10,571,058 · App. 15/416,528 · Granted Feb 25, 2020

Rotary union with integral sensor array

Inventors: Anton A. Petrou (Hawthorn Woods, IL); Christoph Budzus (Hessen, DE); Sargon Guliana (Skokie, IL)
Assignee: Deublin Company
F16L27/087B23Q1/70B23Q11/103B23Q17/007F16L27/082F16L27/0804F16L27/0828Y10T29/49826
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Quick Facts
Patent No.
US 10,571,058
App. No.
15/416,528
Granted
Feb 25, 2020
Kind
B2
Abstract

A rotary device includes a housing, a rotating machine component, a rotating member associated with the rotating machine component, a non-rotating member disposed within the housing adjacent the rotating member, and a sensor array disposed in the housing. The sensor array includes a plurality of sensing elements that are integrated with a control device and a wireless communication device. The wireless communication device is configured to communicate with a central control that is remotely located relative to the housing using electromagnetic waves.

Claims (45)

1. A rotary union configured for transferring a fluid, the rotary union comprising:

a housing having a media channel therein, the housing further having a pocket, the pocket being fluidly isolated from the media channel;

a rotating machine component rotatably supported in the housing;

a rotating seal member associated with the rotating machine component;

a non-rotating seal member slidably and sealably disposed within the housing adjacent the rotating seal member; and

a sensor array disposed in the pocket, the sensor array including a plurality of sensing elements that are integrated with a control device and a communication device;

wherein the sensor array is fluidly isolated from the media channel when the non-rotating seal member is in contact with the rotating seal member to form a mechanical face seal; and

wherein the plurality of sensors includes an accelerometer, a temperature sensor, a motion sensor, a humidity sensor and a magnetic pickup sensor.

2. The rotary union of claim 1 , wherein the housing is made from a plastic material and wherein the communication device is a wireless communication device that includes an antenna.

3. The rotary union of claim 2 , wherein the control device receives information about an operating state of the rotary union from at least one of the plurality of sensors, and continuously communicates the information to a central control via the wireless communication device during operation of the rotary union.

4. A rotary union configured for transferring a fluid, the rotary union comprising:

a housing having a media channel therein, the housing further having a pocket, the pocket being fluidly isolated from the media channel;

a rotating machine component rotatably supported in the housing;

a rotating seal member associated with the rotating machine component;

a non-rotating seal member slidably and sealably disposed within the housing adjacent the rotating seal member;

a sensor array disposed in the pocket, the sensor array including a plurality of sensing elements that are integrated with a control device and a communication device;

wherein the sensor array is fluidly isolated from the media channel when the non-rotating seal member is in contact with the rotating seal member to form a mechanical face seal; and

an expandable seal disposed between and sealably engaging each of the non-rotating seal member and the housing;

wherein the expandable seal includes two end portions, one of the two end portions is engaged with the non-rotating seal member and the other of the two end portions is engaged with the housing, and an expandable portion disposed axially between the two end portions, the expandable portion having an axial length that varies based on a pressure of the fluid present in the media channel.

5. The rotary union of claim 4 , wherein the expandable portion includes at least one bellows.

6. The rotary union of claim 4 , wherein the expandable seal is made from at least one of a rubber, tetra-fluoro-ethylene, or fluoro-elastomer material.

7. A rotary device, comprising:

a housing made from a non-metallic material;

a rotating machine component rotatably supported in the housing;

a rotating member associated with the rotating machine component;

a non-rotating member disposed within the housing adjacent the rotating member; and

a sensor array disposed in the housing, the sensor array including a plurality of sensing elements that are integrated with a control device and a wireless communication device;

wherein the wireless communication device is configured to communicate with a central control that is remotely located relative to the housing using electromagnetic waves; and

wherein the wireless communication device is arranged to remain in communication with the central control for any mounting orientation of the housing relative to the sensor array and the central control; and

wherein the plurality of sensors includes an accelerometer, at least one temperature sensor, a motion sensor, a humidity sensor and a magnetic pickup sensor.

8. The rotary device of claim 7 , wherein the housing is made from a plastic material.

9. The rotary device of claim 7 , wherein the control device receives information about an operating state of the rotary device from at least one of the plurality of sensors, and continuously communicates the information to the central control during operation of the rotary union.

10. The rotary device of claim 7 , wherein the sensor array is disposed in a pocket defined within the housing, the pocket being fluidly separated and isolated from the media channel.

11. A rotary device, comprising:

a housing made from a non-metallic material;

a rotating machine component rotatably supported in the housing;

a rotating member associated with the rotating machine component;

a non-rotating member disposed within the housing adjacent the rotating member; and

a sensor array disposed in the housing, the sensor array including a plurality of sensing elements that are integrated with a control device and a wireless communication device;

wherein the wireless communication device is configured to communicate with a central control that is remotely located relative to the housing using electromagnetic waves;

wherein the wireless communication device is arranged to remain in communication with the central control for any mounting orientation of the housing relative to the sensor array and the central control;

wherein the rotary device is a rotary union, and wherein the rotary union further comprises:

an expandable seal disposed between and sealably engaging each of the non-rotating seal member and the housing;

wherein the expandable seal includes two end portions, one of the two end portions being engaged with the non-rotating seal member and the other of the two end portions being engaged with the housing, and an expandable portion disposed axially between the two end portions, the expandable portion having an axial length that varies based on a pressure of the fluid present in the media channel.

12. The rotary device of claim 11 , wherein the expandable portion includes at least one bellows, and is made from at least one of a rubber, tetra-fluoro-ethylene, or fluoro-elastomer material.

Assignments (2)
CERTIFICATE OF CONVERSION Recorded Dec 8, 2023
From: DEUBLIN COMPANY
To: DEUBLIN COMPANY LLC
Reel/Frame 065835/0631 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 15, 2017
From: PETROU, ANTON A.; BUDZUS, CHRISTOPH
To: DEUBLIN COMPANY
Reel/Frame 041260/0300 →
Continuity (2)
Provisional Application 62289659 · Feb 1, 2016
Related Publication 20170219152A1 · Aug 3, 2017