IP Library Granted Patent US 11,143,258
Granted Patent B2
US 11,143,258 · App. 16/566,123 · Granted Oct 12, 2021

Spiral inertia track vibration absorber

Inventor: Mark Ott (Orchard Park, NY)
Assignee: ITT MANUFACTURING ENTERPRISES LLC
F16F7/1005F16F7/1034F16F2222/08F16F2228/066
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Quick Facts
Patent No.
US 11,143,258
App. No.
16/566,123
Granted
Oct 12, 2021
Kind
B2
Abstract

Technologies are described for devices to absorb vibration. The devices may comprise an inertia track housing, an inertia track fluid reservoir, and an inertia track body. The inertia track fluid reservoir and the inertia track body may be within the inertia track housing. Walls of the inertia track body may define a first and a second spiral inertia track. The first and second spiral inertia tracks may be spiral channels within the outer surface of the inertia track body. The first spiral inertia track may connect a first fluid reservoir with the inertia track fluid reservoir. The second spiral inertia track may connect a second fluid reservoir with the inertia track fluid reservoir. The first and second spiral inertia tracks may be configured to channel the flow of a fluid along the first spiral inertia track and the second spiral inertia track and interact with the fluid to absorb vibration.

Claims (32)

1. A device to absorb vibration, the device comprising:

a housing, wherein a first end of the housing is attachable and removable from a static object or structure;

an inertia track housing within the housing, wherein the inertia track housing includes at least one opening at a longitudinal end;

an inertia track fluid reservoir, wherein the inertia track fluid reservoir is within the inertia track housing;

an inertia track body, wherein the inertia track body is within the inertia track housing, the inertia track body includes walls, and the walls define a first spiral inertia track and a second spiral inertia track within an outer surface of the inertia track body, wherein the first spiral inertia track and the second spiral inertia track are spiral channels within the outer surface of the inertia track body, the first spiral inertia track connects a first fluid reservoir with the inertia track fluid reservoir, the second spiral inertia track connects a second fluid reservoir with the inertia track fluid reservoir, the first spiral inertia track is configured to channel the flow of a fluid along the first spiral inertia track, the second spiral inertia track is configured to channel the flow of the fluid along the second spiral inertia track, and a combination of the flow of the fluid along the first spiral inertial track, the flow of the fluid along the second spiral inertial track, and an interaction of the fluid with the first fluid reservoir, the inertial track fluid reservoir, and the second fluid reservoir, is effective to absorb the vibration; and

a motor within the housing, wherein the motor is attached to an exterior surface of the inertia track housing in a vicinity of the at least one opening and is configured to adjust a position of the inertia track body with respect to the inertia track housing.

2. The device of claim 1 , further comprising at least one stopper, wherein the at least one stopper is configured to seal off an end of the first spiral inertia track and prevent the fluid from flowing past the stopper.

3. The device of claim 1 , further comprising:

a first plunger seal, wherein the first plunger seal is housed within the housing;

a second plunger seal, wherein the second plunger seal is housed within the housing;

the first fluid reservoir, wherein walls of the housing define the first fluid reservoir and the first fluid reservoir is adjacent to the first plunger seal;

the second fluid reservoir, wherein walls of the housing define the second fluid reservoir and the second fluid reservoir is adjacent to the second plunger seal;

a strut arm, wherein a first end of the strut arm is secured to the first plunger seal and a second end of the strut arm is attached to a mobile end; and

wherein the inertia track housing is attached to inner edges of the first plunger seal and inner edges of the second plunger seal and the inertia track housing is in contact with the strut arm.

4. The device of claim 3 , further comprising the fluid, wherein the first fluid reservoir, the second fluid reservoir, the inertia track fluid reservoir, the first spiral inertia track, and the second spiral inertia track hold the fluid.

5. The device of claim 4 , wherein the fluid is a hydraulic fluid.

6. The device of claim 4 , wherein the fluid is effective to flow in a first direction, towards the mobile end of the strut arm, through the first spiral inertia track, from the first fluid reservoir to the inertia track fluid reservoir, and in a second direction, towards a stationary end of the strut arm, from the inertia track fluid reservoir to the second fluid reservoir.

7. The device of claim 3 , wherein the first plunger seal and the second plunger seal are elastomeric bearings.

8. The device of claim 3 , wherein the housing is configured to allow access to the inertia track body to adjust a position of the inertia track body with respect to the inertia track housing.

9. A method for absorbing vibration, the method comprising:

receiving vibration to be absorbed;

flowing a fluid from a first fluid reservoir to an inertia track fluid reservoir along a first spiral inertia track, wherein the first spiral inertia track is defined by walls of an inertia track body, the first spiral inertial track is a spiral channel within an outer surface of the inertia track body, and the first spiral inertia track is configured to channel the flow of the fluid along the first spiral inertia track;

flowing the fluid from the inertia track fluid reservoir to a second fluid reservoir along a second spiral inertia track, wherein the second spiral inertia track is defined by walls of the inertia track body, the second spiral inertial track is a spiral channel within the outer surface of the inertia track body, and the second spiral inertia track is configured to channel the flow of the fluid along the second spiral inertia track;

absorbing the energy of the vibration by a combination of the flowing of the fluid along the first spiral inertial track, flowing of the fluid along the second spiral inertial track, and interacting the fluid with the first fluid reservoir, the inertial track fluid reservoir, and the second fluid reservoir; and

adjusting a position of the inertia track body with respect to an inertia track housing that contains the inertia track body through a motor within a housing that contains the inertia track housing, wherein a first end of the housing is attachable and removable from a static object or structure, and the motor is attached to an exterior surface of the inertia track housing in a vicinity of the at least one opening at a longitudinal end of the inertia track housing.

10. The method of claim 9 , wherein the fluid is a hydraulic fluid.

11. The method of claim 9 , wherein first spiral inertia track includes a stopper to seal off an end of the first spiral inertia track and prevent the fluid from flowing past the stopper.

12. The method of claim 9 , further comprising:

flowing the fluid from the inertia track fluid reservoir to the first fluid reservoir along the first spiral inertia track; and

flowing the fluid from the second fluid reservoir to the inertia track fluid reservoir along the second spiral inertia track.

13. The method of claim 9 , wherein a length of the first spiral inertia track and a length of the second spiral inertia track are adjustable.

14. The method of claim 13 , wherein the length of the first spiral inertia track and the length of the second spiral inertia track are adjustable by the motor.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 14, 2024
From: ITT MANUFACTURING ENTERPRISES LLC
To: ITT ENIDINE INC.
Reel/Frame 068891/0200 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 10, 2019
From: OTT, MARK
To: ITT MANUFACTURING ENTERPRISES LLC
Reel/Frame 050328/0484 →
Continuity (1)
Related Publication 20210071733A1 · Mar 11, 2021