IP Library › Granted Patent US 12,066,015
Granted Patent B2
US 12,066,015 · App. 17/603,617 · Granted Aug 20, 2024

Mechanism for electronic adjustment of flows in fixed displacement pump

Inventors: Francis Dongil Suh (Whitestone, NY); Joseph Ervin Middleton (Hicksville, NY); David Lionel Rawlings (Sound Beach, NY)
Assignee: FLUID METERING, INC.
F04B1/295F04B7/06F04B17/03F04B13/00F04B19/22F04B49/125
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 12,066,015
App. No.
17/603,617
Granted
Aug 20, 2024
Kind
B2
Abstract

An electronic angle adjustment mechanism for a pump and a motor generally includes a base and a linear actuator. The base has an upper portion mounted to a motor, a lower portion mounted to a pump, and a hinge for pivotably moving the upper base portion in relation to the lower base portion. The linear actuator is mounted to on an attachment plate that also attaches the motor to the upper base portion. The linear actuator can drive a flexible member or connect to a gear wheel or worm screw to pivot about the hinge and change an angle between the upper and lower base portions.

Claims (16)

1. An angle adjustment mechanism for a pump and a motor comprising: a base including an upper base portion having a first end for mounting the motor and a second end, a lower base portion having a first end for mounting the pump and a second end, and a hinge pivotably connecting said second end of said upper base portion and said second end of said lower base portion; a linear actuator; a substantially flat flexible member having a proximal end attached to said linear actuator and a distal end connected to a collar attached to the lower base portion; a cam block mounted to said collar, said cam block having a curved support surface that forms a curved path for guiding said substantially flat flexible member along said curved path; a roller bearing adjacent said cam block, said roller bearing pressing said substantially flat flexible member against said curved surface of said cam block; and an attachment plate that attaches the motor to the first end of the upper base portion, said attachment plate extending outwardly from the motor for mounting the linear actuator; wherein actuation of said linear actuator drives the substantially flat flexible member in the curved path causing said lower base portion and upper base portion to pivot with respect to each other about said hinge, thereby changing an angle between said lower base portion and said upper base portion.

2. The angle adjustment mechanism as defined in claim 1 , wherein said linear actuator comprises a drive rod movable along a linear axis and a drive rod coupler attached to a distal end of said drive rod, said substantially flat flexible member being attached to said drive rod coupler.

3. The angle adjustment mechanism as defined in claim 1 , wherein said substantially flat flexible member comprises a spring steel material.

4. The angle adjustment mechanism as defined in claim 1 , wherein said upper base portion comprises a flange and said flange attaches the upper base portion to the attachment plate.

5. The angle adjustment mechanism as defined in claim 1 , wherein said substantially flat flexible member is bendable for transitioning a linear motion of said linear actuator to a pivoting motion of said upper base portion and said lower base portion with respect to one another.

6. An angle adjustment mechanism for a pump and a motor comprising:

a base including an upper base portion having a first end for mounting the motor and a second end, a lower base portion having a first end for mounting the pump and a second end, and a hinge pivotably connecting said second end of said upper base portion and said second end of said lower base portion, wherein a collar is attached to the lower base portion;

a linear actuator;

an attachment plate that attaches the motor to the first end of the upper base portion, said attachment plate extending outwardly from the motor for mounting the linear actuator;

a cam block mounted to said collar, said cam block having a curved support surface that forms a curved path for guiding a substantially flat flexible member along said curved path;

a roller bearing adjacent said cam block, said roller bearing pressing the substantially flat flexible member against said curved surface of said cam block; and

wherein actuation of said linear actuator drives the substantially flat flexible member in said curved path causing said lower base portion and upper base portion to pivot with respect to each other about said hinge, thereby changing an angle between said lower base portion and said upper base portion.

7. The angle adjustment mechanism as defined in claim 6 , wherein said linear actuator comprises a drive rod movable along a linear axis and a drive rod coupler attached to a distal end of said drive rod, said substantially flat flexible member being attached to said drive rod coupler.

8. The angle adjustment mechanism as defined in claim 6 , wherein said substantially flat flexible member comprises a spring steel material.

9. The angle adjustment mechanism as defined in claim 6 , wherein said upper base portion comprises a flange and said flange attaches the upper base portion to the attachment plate.

10. The angle adjustment mechanism as defined in claim 6 , wherein said substantially flat flexible member is bendable for transitioning a linear motion of said linear actuator to a pivoting motion of said upper base portion and said lower base portion with respect to one another.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 17, 2024
From: SUH, FRANCIS DONGIL; MIDDLETON, JOSEPH ERVIN; RAWLINGS, DAVID LIONEL
To: FLUID METERING, INC.
Reel/Frame 067446/0762 →
Continuity (2)
Provisional Application 62881086 · Jul 31, 2019
Related Publication 20220213884A1 · Jul 7, 2022