IP Library Granted Patent US 7,926,410
Granted Patent B2
US 7,926,410 · App. 12/108,038 · Granted Apr 19, 2011

Hydraulic circuit for synchronized horizontal extension of cylinders

Assignee: J.R. Automation Technologies, L.L.C.
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Quick Facts
Patent No.
US 7,926,410
App. No.
12/108,038
Granted
Apr 19, 2011
Kind
B2
Abstract

A hydraulic system for synchronized movement of multiple cylinders in a horizontal plane includes a bidirectional pump, a shuttle valve cross-connected between pump outlets, flow-control check valves, and control valves which combine to reduce the number of valves in the hydraulic circuit and to reduce total cost of components for the system. The shuttle valve of the hydraulic system provides fluid for resynchronizing extension and retraction of multiple cylinder assemblies without disconnection of lines, provides air removal without disconnection of lines, allows easy addition/refill of hydraulic fluid, and allows excellent control of the extendable cylinder assemblies.

Claims (31)

1. A hydraulic system comprising:

a plurality of cylinder assemblies oriented and adapted to be connected to an object for moving the object in a desired horizontal direction;

a synchronizer having a plurality of isolated chambers corresponding to the plurality of cylinder assemblies;

a bidirectional pump with a first outlet for pumping fluid to operate the system in a first direction and a second outlet for pumping fluid to operate the system in a second direction;

a reversible motor connected to the pump for reversibly driving the pump; and

a hydraulic circuit operably connecting the cylinder assemblies, the isolated chambers, and the bidirectional pump; the circuit including first and second branches connected to the first and second outlets, respectively, and to the cylinder assemblies for simultaneously extending or simultaneously retracting the cylinder assemblies; the hydraulic circuit further including a shuttle valve operably connected between the first and second branches for delivering pressurized fluid from the first and second branches to selected other parts of the hydraulic circuit, whereby the pressurized fluid from the shuttle valve can be used to do at least one of the following: rebalance fluid in the isolated chambers of the synchronizer, resynchronize the cylinder assemblies, remove air from the hydraulic system, and/or refill fluid into a selected portion of the hydraulic circuit.

2. The hydraulic system of claim 1 , wherein the first and second branches each include check valves to lock extension of the cylinder assemblies in a selected position.

3. The hydraulic system of claim 1 , wherein the hydraulic circuit includes a resynchronization-and-refill branch operably connected to the cylinder assemblies, the shuttle valve being operably connected to selectively deliver fluid to the resynchronzation-and-refill branch.

4. The hydraulic system defined in claim 3 , wherein the resynchronization-and-refill branch incorporates at least one flow control for controlling a speed of fluid flow in the resynchronization-and-refill branch.

5. The hydraulic system defined in claim 3 , wherein the resynchronization-and-refill branch incorporates at a first valve for refilling the synchronizer and cylinder assemblies, and a second valve for dumping fluid from the synchronizer and cylinder assemblies.

6. A hydraulic system comprising:

a plurality of cylinder assemblies adapted to be connected to and move an object in a desired horizontal direction;

a synchronizer having a plurality of isolated chambers corresponding to the plurality of cylinder assemblies;

a bidirectional pump with a first outlet for pumping fluid to operate the system in a first direction and a second outlet for pumping fluid to operate the system in a second direction;

a reversible motor connected to the pump for reversibly driving the pump; and

a hydraulic circuit operably connecting the cylinder assemblies, the isolated chambers, and the bidirectional pump; the circuit including first and second branches connected to the first and second outlets, respectively, and to the plurality of cylinder assemblies, and including first and second flow controls to control a speed of extension of the cylinder assemblies by controlling a speed of oil flow through the first and second branches back toward the first and second outlets, respectively, wherein the first and second branches include check valves to lock extension of the cylinder assemblies in a selected position.

7. A hydraulic system comprising:

a plurality of cylinder assemblies adapted to be connected to and move an object in a desired horizontal direction;

a synchronizer having a plurality of isolated chambers corresponding to the plurality of cylinder assemblies;

a bidirectional pump with a first outlet for pumping fluid to operate the system in a first direction and a second outlet for pumping fluid to operate the system in a second direction;

a reversible motor connected to the pump for reversibly driving the pump; and

a hydraulic circuit operably connecting the cylinder assemblies, the isolated chambers, and the bidirectional pump; the circuit including first and second branches connected to the first and second outlets, respectively, and to the plurality of cylinder assemblies, and including first and second flow controls to control a speed of extension of the cylinder assemblies by controlling a speed of oil flow through the first and second branches back toward the first and second outlets, respectively including a shuttle valve interconnecting the first and second outlets of the pump for providing a source of fluid output regardless of which one of the first and second outlets is providing pressurized fluid.

8. A method comprising steps of:

providing a plurality of cylinder assemblies oriented and adapted to be connected to an object for moving the object in a desired horizontal direction;

providing a synchronizer having a plurality of isolated chambers corresponding to the plurality of cylinder assemblies;

providing a bidirectional pump with a first outlet for pumping fluid to operate the system in a first direction and a second outlet for pumping fluid to operate the system in a second direction;

providing a reversible motor connected to the pump for reversibly driving the pump;

providing a hydraulic circuit operably connecting the cylinder assemblies, the isolated chambers, and the bidirectional pump; the circuit including first and second branches connected to the first and second outlets, respectively, and to the cylinder assemblies for simultaneously extending or simultaneously retracting the cylinder assemblies; the hydraulic circuit further including a shuttle valve operably connected between the first and second branches for delivering pressurized fluid from the first and second branches to selected other parts of the hydraulic circuit; and

selectively operating the shuttle valve to do at least one of the following: rebalance fluid in the isolated chambers of the synchronizer, resynchronize the cylinder assemblies, remove air from the hydraulic system, or refill fluid into a selected portion of the hydraulic circuit.

9. The method defined in claim 8 , wherein the step of selectively operating the shuttle valve includes doing at least two of the following: rebalance fluid in the isolated chambers of the synchronizer, resynchronize the cylinder assemblies, remove air from the hydraulic system, or refill fluid into a selected portion of the hydraulic circuit.

10. The method defined in claim 8 , including a step of operating the reversible motor, including reversing operation of the reversible motor.

Assignments (2)
PATENT SECURITY AGREEMENT Recorded Mar 17, 2015
From: J.R. AUTOMATION TECHNOLOGIES, LLC
To: BANK OF AMERICA, N.A., AS COLLATERAL AGENT
Reel/Frame 035209/0400 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 23, 2008
From: BAIR, EUGENE C.
To: J.R. AUTOMATION TECHNOLOGIES, L.L.C.
Reel/Frame 020844/0724 →
Continuity (3)
Provisional Application 60915192 · May 1, 2007
Provisional Application 60915759 · May 3, 2007
Related Publication 20080271445A1 · Nov 6, 2008