IP Library Granted Patent US 11,078,902
Granted Patent B2
US 11,078,902 · App. 15/993,657 · Granted Aug 3, 2021

Adapter plate with heat exchanger for a pump and motor

Inventor: Steven Yoshimura (Torrance, CA)
Assignee: Parker-Hannifin Corporation
F04B53/08F04B17/03F04B53/16F04D29/586
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 11,078,902
App. No.
15/993,657
Granted
Aug 3, 2021
Kind
B2
Abstract

A pump assembly includes a pump having a fluid inlet and a fluid outlet, and an electric motor having a drive mechanism that is connected to the pump mechanism. The assembly includes an adapter plate having an inlet port, an outlet port, and at least one fluid passage between the inlet port and the outlet port. The at least one fluid passage is at least partially defined by the adapter plate. The motor is thermally coupled to the adapter plate and the fluid outlet of the pump is fluidly connected to the inlet port of the adapter plate. The pump is configured to pump fluid through the at least one fluid passage of the adapter plate, and the adapter plate is configured to discharge the fluid.

Claims (37)

1. A pump assembly comprising:

a pump having a fluid inlet and a fluid outlet;

a motor having a drive mechanism that is connected to the pump;

a motor housing that contains the motor and defines an end face; and

an adapter plate having an inlet port, an outlet port, and at least one fluid passage between the inlet port and the outlet port that forms an outlet of the pump assembly separate from the fluid outlet of the pump, the at least one fluid passage being defined by the adapter plate, the adapter plate defining a planar surface in which the at least one fluid passage is formed that engages the end face of the motor housing and extends across the motor whereby the motor is thermally coupled to the adapter plate, and

wherein the fluid outlet of the pump is fluidly connected to the inlet port of the adapter plate, the pump being configured to pump fluid through the at least one fluid passage of the adapter plate to circulate the fluid against the end face of the motor housing in a plane that is parallel with the end face of the motor housing for cooling the motor, and the adapter plate being configured to discharge the fluid through the outlet port of the adapter plate and out of the pump assembly.

2. The pump assembly according to claim 1 further comprising a pump housing that contains the pump, wherein the motor housing is thermally coupled to a first side of the adapter plate and the pump housing is mounted to a second side of the adapter plate that opposes the first side.

3. The pump assembly according to claim 1 , wherein the adapter plate covers more than half of an entire area of the end face.

4. The pump assembly according to claim 3 , wherein the adapter plate covers the entire area of the end face.

5. The pump assembly according to claim 1 further comprising a cooling fin that is adjacent the adapter plate and the motor housing.

6. The pump assembly according to claim 1 , wherein the adapter plate is bolted to the motor housing.

7. The pump assembly according to claim 1 , wherein the motor housing is formed of cast iron or steel.

8. The pump assembly according to claim 1 , wherein the at least one fluid passage is u-shaped.

9. The pump assembly according to claim 8 , wherein the at least one fluid passage includes an inlet fluid passage and an outlet fluid passage that extend parallel to each other, and a transverse fluid passage that connects the inlet fluid passage and the outlet fluid passage.

10. The pump assembly according to claim 1 , wherein the adapter plate is formed of a corrosion resistant material.

11. The pump assembly according to claim 1 , wherein the adapter plate is formed of a copper material.

12. The pump assembly according to claim 11 , wherein the adapter plate is formed of a copper nickel material.

13. The pump assembly according to claim 1 further comprising an enclosure in which the pump, the motor, and the adapter plate are contained.

14. An open pump system comprising:

an enclosure;

a pump arranged within the enclosure, the pump having a pump housing with a fluid inlet and a fluid outlet, and a pump mechanism enclosed by the pump housing;

an electric motor arranged and sealed within the enclosure, the electric motor having a motor housing and a drive mechanism enclosed by the motor housing, wherein the drive mechanism is connected to the pump mechanism; and

an adapter plate arranged within the enclosure, the adapter plate having an inlet port, an outlet port, and at least one fluid passage between the inlet port and the outlet port, the at least one fluid passage being defined by the adapter plate, wherein the motor housing is thermally coupled to the adapter plate, wherein the adapter plate is planar in shape and defines a planar surface in which the at least one fluid passage is formed whereby the at least one fluid passage extends in a plane that is parallel to a plane in which the adapter plate extends,

wherein the fluid outlet of the pump is fluidly connected to the inlet port of the adapter plate, the pump being configured to intake fluid from outside the enclosure through the fluid inlet and pump the fluid through the at least one fluid passage of the adapter plate, and

wherein the fluid is discharged out of the enclosure directly from the outlet port of the adapter plate,

wherein the at least one fluid passage of the adapter plate includes an inlet fluid passage and an outlet fluid passage that extend parallel to each other, and a transverse fluid passage that connects the inlet fluid passage and the outlet fluid passage.

15. The open pump system according to claim 14 , wherein the motor housing is thermally coupled to a first side of the adapter plate and the pump housing is mounted to a second side of the adapter plate that opposes the first side.

16. The open pump system according to claim 14 , wherein the motor housing has a face that engages the adapter plate and the adapter plate covers the entire area of the face.

17. The open pump system according to claim 14 further comprising a cooling fin that is adjacent the adapter plate and the motor housing.

18. The open pump system according to claim 14 , wherein the at least one fluid passage is u-shaped.

19. A method for cooling a motor in a pump and motor assembly, the method comprising:

intaking a flow of fluid through a pump inlet of a pump;

discharging at least part of the flow of fluid through a pump outlet of the pump;

pumping the at least part of the flow of fluid through a fluid passage defined in an adapter plate that is fluidly connected to the pump outlet, wherein the adapter plate is in thermal contact with a motor housing that contains the motor, wherein the adapter plate defines a planar surface in which the fluid passage is formed that engages an end face of the motor housing and extends across the motor;

circulating the at least part of the flow of fluid along the end face of the motor housing in a plane that is parallel with the end face of the motor housing for cooling the motor; and

discharging the at least part of the flow of fluid through a discharge passage defined in the adapter plate; and

discharging the at least part of the flow of fluid from the discharge passage through an outlet port of the adapter plate that is separate from the pump outlet of the pump to discharge the at least part of the flow of fluid out of the pump and motor assembly.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 13, 2022
From: PARKER-HANNIFIN CORPORATION
To: PARKER INTANGIBLES LLC
Reel/Frame 059900/0975 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 31, 2018
From: YOSHIMURA, STEVEN
To: PARKER-HANNIFIN CORPORATION
Reel/Frame 045943/0990 →
Continuity (2)
Provisional Application 62546118 · Aug 16, 2017
Related Publication 20190055938A1 · Feb 21, 2019