IP Library Granted Patent US 9,447,798
Granted Patent B1
US 9,447,798 · App. 14/209,840 · Granted Sep 20, 2016

Fluid powered linear piston motor with harmonic coupling

Inventor: David W. Raymond (Edgewood, NM)
Assignee: Sandia Corporation
F15B15/02F15B15/063
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Quick Facts
Patent No.
US 9,447,798
App. No.
14/209,840
Granted
Sep 20, 2016
Kind
B1
Abstract

A motor is disclosed that includes a module assembly including a piston that is axially cycled. The piston axial motion is coupled to torque couplers that convert the axial motion into rotary motion. The torque couplers are coupled to a rotor to rotate the rotor.

Claims (58)

1. A motor, comprising:

a housing; and

a piston drive section disposed within the housing;

wherein the piston drive section comprises:

a rotor; and

a module assembly disposed around the rotor, the module assembly comprising:

a piston assembly having a first end and a second end;

and a first and second torque couplers coupled to the first and second ends of the piston assembly, respectively,

and further coupled to the rotor;

wherein axial motion of the piston assembly within the housing causes the first and second torque couplers to rotate the rotor.

2. The motor of claim 1 , wherein

the first and second torque couplers comprise a protrusion that follows a ridge disposed on a top surface of the piston assembly as the piston assembly moves axially so that the first and second torque couplers are rotated.

3. The motor assembly of claim 1 , wherein the rotor is an annular tube comprising:

a rotor housing comprising a first end and a second end, an exterior surface and an interior surface; and

an exhaust manifold disposed within the rotor housing;

wherein the exhaust manifold comprises an interior surface and an exterior surface and a manifold exhaust port connecting the interior surface to the exterior surface.

4. The motor assembly of claim 3 , wherein the rotor housing further comprises:

a fluid pressure port between the interior and exterior surfaces; and

a fluid exhaust port between the interior and exterior surfaces.

5. The motor assembly of claim 4 , wherein the manifold exhaust port is fluidly connected to the fluid exhaust port of the rotor housing.

6. The motor assembly of claim 1 , wherein the piston assembly further comprises:

a first fluid chamber and a second fluid chamber and a valve sleeve comprising a pressure inlet slot and an exhaust outlet slot.

7. The motor assembly of claim 6 , wherein the first and second fluid chambers are configured to receive and exhaust a fluid as the first and second fluid chambers come into fluid connectivity with the pressure inlet slot and the exhaust outlet slot as the piston assembly axially cycles in the housing.

8. A drilling assembly, comprising:

a housing;

a piston drive section disposed within the housing;

an output section coupled to the piston drive section; and

a drill bit coupled to the output section;

wherein the piston drive section comprises:

a rotor; and

a module assembly disposed around the rotor, the module assembly comprising:

a piston assembly having a first end and a second end;

and a first and second torque couplers coupled to the first and second ends of the piston assembly, respectively, and further coupled to the rotor;

wherein axial motion of the piston assembly within the housing causes the first and second torque couplers to rotate the rotor.

9. The drilling assembly of claim 8 , wherein

the first and second torque converters comprise a protrusion that follows a ridge disposed on a top surface of the piston assembly as the piston assembly moves axial so that the first and second torque couplers are rotated.

10. The drilling assembly of claim 8 , wherein the rotor is an annular tube comprising:

a rotor housing comprising a first end and a second end, an exterior surface and an interior surface; and

an exhaust manifold disposed within the rotor housing;

wherein the exhaust manifold comprises an interior surface and an exterior surface and a manifold exhaust port connecting the interior surface to the exterior surface.

11. The drilling assembly of claim 10 , wherein the rotor housing further comprises:

a fluid pressure port between the interior and exterior surfaces; and

a fluid exhaust port between the interior and exterior surfaces.

12. The drilling assembly of claim 11 , wherein the manifold exhaust port is fluidly connected to the fluid exhaust port of the rotor housing.

13. The drilling assembly of claim 8 , wherein the piston assembly further comprises:

a first fluid chamber and a second fluid chamber and a valve sleeve comprising a pressure inlet slot and an exhaust outlet slot.

14. The drilling assembly of claim 13 , wherein the first and second fluid chambers are configured to receive and exhaust a fluid as the first and second fluid chambers come into fluid connectivity with the pressure inlet slot and the exhaust outlet slot as the piston assembly axially cycles in the housing.

15. A method of powering a motor, comprising:

providing a pressured fluid to an inlet of a rotor housing of a rotor of the motor;

porting the pressured fluid to a first chamber of a piston assembly disposed around the rotor at an initial position to drive a piston of the piston assembly in a first axial direction in the housing by the pressurized fluid;

porting the pressurized fluid from the first chamber to an exhaust manifold disposed within the rotor housing; and

porting additional pressurized fluid to a second chamber of the piston assembly disposed around the rotor to drive the piston in a second axial direction opposite the first axial direction to return the piston to the initial position;

wherein driving the piston in the first axial direction rotates a first torque coupler that rotates a rotor.

16. The method of claim 15 , further comprising:

porting the pressurized fluid from the second chamber to the exhaust manifold disposed within the rotor housing.

17. The method of claim 15 , wherein driving the piston in the second axial direction rotates a second torque coupler that rotates the rotor.

18. The method of claim 15 , wherein the piston assembly is coupled to the housing by engaging splines.

19. The method of claim 15 , wherein rotating the rotor rotates a drill shaft coupled thereto.

Assignments (3)
CHANGE OF NAME Recorded May 25, 2018
From: SANDIA CORPORATION
To: NATIONAL TECHNOLOGY & ENGINEERING SOLUTIONS OF SANDIA, LLC
Reel/Frame 047052/0192 →
CONFIRMATORY LICENSE Recorded Dec 4, 2015
From: SANDIA CORPORATION
To: U.S. DEPARTMENT OF ENERGY
Reel/Frame 037218/0428 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 24, 2015
From: RAYMOND, DAVID W.
To: SANDIA CORPORATION
Reel/Frame 035239/0530 →
Continuity (2)
Continuation In Part 14198377 · Mar 5, 2014
Provisional Application 61785539 · Mar 14, 2013