IP Library Granted Patent US 9,611,619
Granted Patent B1
US 9,611,619 · App. 14/920,411 · Granted Apr 4, 2017

Hydraulic hybrid circuit with energy storage for excavators or other heavy equipment

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Quick Facts
Patent No.
US 9,611,619
App. No.
14/920,411
Granted
Apr 4, 2017
Kind
B1
Abstract

A hydraulic system powered by a shaft of an engine to control a plurality of hydraulic cylinders including at least one boom lift hydraulic cylinder coupled to a boom to pivot the boom about a horizontal axis, wherein a first variable displacement pump/motor and a second variable displacement pump/motor can be connected to provide a higher flow to the at least one boom lift hydraulic cylinder than a flow achieved by one of the first variable displacement pump/motor or the second variable displacement pump/motor, and a high-pressure accumulator and the first variable displacement pump/motor and the second variable displacement pump/motor can add power back to the engine shaft.

Claims (18)

1. A work machine, comprising:

a chassis;

an engine carried by the chassis;

a boom pivotally coupled to the chassis and operated by at least one boom swing hydraulic motor coupled to the boom to pivot the boom about a vertical axis;

a dipper pivotally coupled to the boom;

an implement pivotally coupled to the dipper; and

a hydraulic system powered by a shaft of the engine to control a plurality of hydraulic cylinders including at least one boom lift hydraulic cylinder coupled to the boom to pivot the boom about a horizontal axis, a dipper hydraulic cylinder coupled to the dipper to pivot the dipper about a horizontal axis, and an implement hydraulic cylinder coupled to the implement to pivot the implement about a horizontal axis, the hydraulic system comprising:

a first variable displacement pump/motor delivering a fluid either through a first load-holding valve to a head side of the at least one boom lift hydraulic cylinder or through a second load-holding valve to a rod side of the at least one boom lift hydraulic cylinder;

a second variable displacement pump/motor delivering a fluid either through a bi-directional valve to a high-pressure accumulator or through both a third load-holding valve and the first load-holding valve to the head side of the at least one boom lift hydraulic cylinder; and

a charge pump delivering a fluid to a low-pressure accumulator, a boom hydraulic circuit, and a swing hydraulic circuit;

wherein the first variable displacement pump/motor and the second variable displacement pump/motor can be connected to provide a higher flow to the at least one boom lift hydraulic cylinder than a flow achieved by one of the first variable displacement pump/motor or the second variable displacement pump/motor, and the high-pressure accumulator and the first variable displacement pump/motor and the second variable displacement pump/motor can add power back to the engine shaft.

2. The work machine of claim 1 , wherein the first variable displacement pump/motor is used as a primary mover for the at least one boom lift hydraulic cylinder and a secondary mover for the boom swing hydraulic motor; and the second variable displacement pump/motor is used as a secondary mover for the at least one boom lift hydraulic cylinder, a primary mover for the boom swing hydraulic motor, and a power assist to the engine shaft.

3. A hydraulic system powered by a shaft of an engine to control a plurality of hydraulic cylinders including at least one boom lift hydraulic cylinder coupled to a boom to pivot the boom about a horizontal axis, a dipper hydraulic cylinder coupled to a dipper to pivot the dipper about a horizontal axis, and an implement hydraulic cylinder coupled to an implement to pivot the implement about a horizontal axis, the hydraulic system comprising:

a first variable displacement pump/motor delivering a fluid either through a first load-holding valve to a head side of the at least one boom lift hydraulic cylinder or through a second load-holding valve to a rod side of the at least one boom lift hydraulic cylinder;

a second variable displacement pump/motor delivering a fluid either through a bi-directional valve to a high-pressure accumulator or through both a third load-holding valve and the first load-holding valve to the head side of the at least one boom lift hydraulic cylinder; and

a charge pump delivering a fluid to a low-pressure accumulator, a boom hydraulic circuit, and a swing hydraulic circuit;

wherein the first variable displacement pump/motor and the second variable displacement pump/motor can be connected to provide a higher flow to the at least one boom lift hydraulic cylinder than a flow achieved by one of the first variable displacement pump/motor or the second variable displacement pump/motor, and the high-pressure accumulator and the first variable displacement pump/motor and the second variable displacement pump/motor can add power back to the engine shaft.

4. The hydraulic system of claim 3 , wherein the first variable displacement pump/motor is used as a primary mover for the at least one boom lift hydraulic cylinder and a secondary mover for the boom swing hydraulic motor; and the second variable displacement pump/motor is used as a secondary mover for the at least one boom lift hydraulic cylinder, a primary mover for the boom swing hydraulic motor, and a power assist to the engine shaft.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 9, 2018
From: CNH INDUSTRIAL AMERICA LLC
To: BLUE LEAF I.P., INC.
Reel/Frame 048101/0019 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 22, 2015
From: ZIMMERMAN, JOSHUA D.
To: CNH INDUSTRIAL AMERICA LLC
Reel/Frame 036859/0289 →