IP Library Granted Patent US 11,143,275
Granted Patent B2
US 11,143,275 · App. 16/177,312 · Granted Oct 12, 2021

Systems and methods that use harmonic drives for converting reciprocating axial motion to continuous rotary motion, helical drives for converting reciprocating rotary motion to reciprocating axial motion and combinations thereof for converting reciprocating rotary motion to continuous rotary motion

Inventors: David W. Raymond (Edgewood, NM); William T. Radigan (Albuquerque, NM)
Assignees: National Technology & Engineering Solutions of Sandia, LLC; William T. Radigan
F16H25/122E21B4/006E21B4/02F16H25/06F16H49/001F16H2025/063
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 11,143,275
App. No.
16/177,312
Granted
Oct 12, 2021
Kind
B2
Abstract

A harmonic drive assembly and fluid-powered linear motors with both axial pistons are rotary piston arrangements incorporating the harmonic drive assembly are disclosed. The motors may be used in downhole drilling applications, but the drive assembly and/or motors may be used in other applications. The assembly, motors and methods use advanced harmonic drives, advanced helical drives, and combinations thereof with 1) motors with axial pistons and reciprocating linear rings to convert reciprocative axial motion to continuous rotary motion, and 2) motors with rotary pistons and reciprocating linear rings to rectify reciprocative rotary motion to continual rotary motion to improve performance over prior configurations.

Claims (23)

1. A linear motor module, comprising:

a primary rotor assembly comprising a harmonic drive rotor comprising two or more track grooves;

a harmonic drive reciprocating ring coupled to the primary rotor assembly, the harmonic drive reciprocating ring comprising two or more ball transfer outer race housings that define ball transfer outer races;

at least one ball disposed within each of the track groves and ball transfer outer races;

a first and a second piston assembly coupled to opposing axial ends of the harmonic drive reciprocating ring; and

a first and a second fluid chamber on opposing axial ends of the harmonic drive reciprocating ring configured for a fluid to alternatingly pressurize the first and second fluid chambers to impart reciprocating linear motion to the harmonic drive reciprocation ring, which imparts continuous rotary motion to the primary rotor assembly.

2. The linear motor module of claim 1 , wherein the ball transfer outer races comprise a number of outer race cycles per revolution that exceeds the number of harmonic drive rotor cycles per revolution of the harmonic drive rotor.

3. The linear motor module of claim 1 , wherein the outer race housing, harmonic drive rotor and at least one ball are dimensioned to ensure rolling motion at the interface of the outer race housing and harmonic drive rotor.

4. The linear motor module of claim 1 , wherein the primary rotor assembly further comprises a primary rotor shaft comprising a fluid inlet and a fluid outlet for receiving and discharging the fluid.

5. The linear motor module of claim 1 , further comprising a liner assembly disposed around the harmonic drive reciprocating ring that ports the fluid to and from the first and second fluid chambers.

6. A linear motor comprising:

two or more linear motor modules, wherein at least one of the two or more linear motor modules comprises:

a primary rotor assembly comprising a harmonic drive rotor comprising two or more track grooves;

a harmonic drive reciprocating ring coupled to the primary rotor assembly, the harmonic drive reciprocating ring comprising two or more ball transfer outer race housings that define ball transfer outer races;

at least one ball disposed within each of the track groves and outer races;

a first and a second piston assembly coupled to opposing axial ends of the harmonic drive reciprocating ring; and

a first and a second fluid chamber on opposing axial ends of the harmonic drive reciprocating ring configured for a fluid to alternatingly pressurize the first and second fluid chambers to impart reciprocating linear motion to the harmonic drive reciprocation ring, which imparts continuous rotary motion to the primary rotor assembly.

7. The linear motor or claim 6 , further comprising a housing surrounding the two or more linear modules.

8. The linear motor of claim 6 , wherein the ball transfer outer races comprise a number of outer race cycles per revolution that exceeds the number of harmonic drive rotor cycles per revolution of the harmonic drive rotor.

9. The linear motor module of claim 6 , wherein the outer race housing, harmonic drive rotor and at least one ball are dimensioned to ensure rolling motion at the interface of the outer race housing and the at least one ball and at the interface between the at least one ball and harmonic drive rotor.

10. The linear motor of claim 6 , wherein at least two or more linear motor modules are mechanically and fluidly coupled.

11. The linear motor module of claim 6 , wherein the primary rotor assembly further comprises a primary rotor shaft comprising a fluid inlet and a fluid outlet for receiving and discharging the fluid.

12. The linear motor module of claim 6 , further comprising a liner assembly disposed around the harmonic drive reciprocating ring for porting the fluid to and from the first and second fluid chambers.

Assignments (2)
CONFIRMATORY LICENSE Recorded Feb 6, 2019
From: NATIONAL TECHNOLOGY & ENGINEERING SOLUTIONS OF SANDIA, LLC
To: U.S. DEPARTMENT OF ENERGY
Reel/Frame 048264/0139 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 10, 2018
From: RAYMOND, DAVID W.
To: NATIONAL TECHNOLOGY & ENGINEERING SOLUTIONS OF SANDIA, LLC
Reel/Frame 047761/0280 →
Continuity (2)
Provisional Application 62579265 · Oct 31, 2017
Related Publication 20190128391A1 · May 2, 2019
Cited By (1)
US 12,680,363