IP Library Granted Patent US 10,947,963
Granted Patent B2
US 10,947,963 · App. 16/086,100 · Granted Mar 16, 2021

Hydraulic pump with inlet baffle

Inventor: Daniel Dyminski (Portage, MI)
Assignee: Parker-Hannifin Corporation
F04B1/2021F04B1/2064F04B1/2035F04B1/2042F04B1/324F04B11/0091
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Quick Facts
Patent No.
US 10,947,963
App. No.
16/086,100
Granted
Mar 16, 2021
Kind
B2
Abstract

An inlet baffle chamber ( 40 ) is provided in the port cover ( 26 ) of a piston pump. The inlet baffle chamber ( 26 ) fluidly connects a compressed piston chamber to an adjacent lower pressure piston chamber while the lower pressure piston chamber is in the suction cycle and separately receiving fluid from an inlet manifold ( 38 ) of the port cover ( 26 ). Instead of de-compressing high pressure fluid directly to pump's inlet ( 36 ) as in prior art pumps, the inlet baffle chamber ( 40 ) directs fluid to the next piston that is already in the suction cycle.

Claims (32)

1. A pump assembly comprising:

a piston rotating group including a pump barrel defining a plurality of bores, and a plurality of moveable pistons that are received in the plurality of bores of the pump barrel;

an input shaft for driving rotation of the piston rotating group;

wherein as the piston rotating group rotates, the pistons extend and contract to drive fluid into and out from the pump assembly;

a port plate having an inlet fluid passage, an outlet fluid passage, and a decompression port; and

a port cover including a baffle chamber and an inlet manifold;

the piston rotating group being configured such that during operation the piston rotating group provides a position in which a fluid from a compressed piston bore flows through the decompression port to the baffle chamber of the port cover, and from the baffle chamber through the inlet fluid passage of the port plate, and into a low pressure piston bore adjacent to the first compressed piston bore while the low pressure piston bore is fluidly connected to the inlet manifold.

2. A pump assembly comprising:

a piston rotating group including a pump barrel defining a plurality of bores, and a plurality of moveable pistons that are received in the plurality of bores of the pump barrel;

an input shaft for driving rotation of the piston rotating group;

wherein as the piston rotating group rotates, the pistons extend and contract to drive fluid into and out from the pump assembly;

a port plate having an inlet fluid passage, an outlet fluid passage, and a decompression port;

a port cover including a baffle chamber and an inlet manifold; and

the decompression port is fluidly connected to the baffle chamber of the port cover, and the baffle chamber is fluidly connected to the inlet fluid passage of the port plate;

wherein a pressurized fluid from a compressed piston bore is directed through the decompression port and into the baffle chamber of the port cover and from the baffle chamber through the inlet fluid passage of the port plate and into a low pressure piston bore adjacent to the compressed piston bore.

3. A pump assembly comprising:

a piston rotating group including a pump barrel defining a plurality of bores, and a plurality of moveable pistons that are received in the plurality of bores of the pump barrel;

an input shaft for driving rotation of the piston rotating group;

wherein as the piston rotating group rotates, the pistons extend and contract to drive fluid into and out from the pump assembly;

a port plate having an inlet fluid passage, an outlet fluid passage, and a decompression port;

a port cover including a baffle chamber and an inlet manifold;

the piston rotating group having a position in which a compressed piston bore is fluidly connected to the decompression port of the port plate, the decompression port is fluidly connected to the baffle chamber of the port cover, the baffle chamber is fluidly connected to the inlet fluid passage of the port plate, and the inlet fluid passage of the port plate is fluidly connected to a low pressure piston bore adjacent to the first compressed piston bore, the low pressure piston bore also being fluidly connected to the inlet manifold;

wherein a pressurized fluid from the compressed piston bore is directed through the decompression port of the port plate and into the baffle chamber and from the baffle chamber through the inlet fluid passage of the port plate and into the low pressure piston bore adjacent to the compressed piston bore.

4. The pump assembly of claim 3 , wherein the baffle chamber is formed in the port cover separate from the inlet manifold.

5. The pump assembly of claim 3 , wherein the baffle chamber is formed by a metal plate inserted transversely across a portion of the inlet manifold.

6. The pump assembly of claim 3 , wherein the baffle chamber is machined into the port cover.

7. The pump assembly of claim 3 , wherein the baffle chamber is cast into the port cover.

8. The pump assembly as in claim 3 , further comprising a displaceable swashplate.

9. The pump assembly as in claim 3 , wherein the pump assembly is an axial piston pump assembly.

10. The pump assembly as in claim 3 , wherein the pump assembly is a bent axis piston pump assembly.

11. The pump assembly of claim 3 , wherein the baffle chamber is part of the inlet manifold of the port cover.

12. The pump assembly of claim 3 , wherein the baffle chamber is adjacent the inlet manifold of the port cover.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 1, 2021
From: PARKER-HANNIFIN CORPORATION
To: PARKER INTANGIBLES LLC
Reel/Frame 056440/0597 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 18, 2018
From: DYMINSKI, DANIEL
To: PARKER-HANNIFIN CORPORATION
Reel/Frame 046899/0901 →
Continuity (2)
Provisional Application 62346137 · Jun 6, 2016
Related Publication 20190390663A1 · Dec 26, 2019