Power transmission

4201052
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Inventors

Breeden, Robert H.
Farrell, Robert G.
Taylor, Henry D.

Application #

024058

Filed

Mar-26-1979

Published

May-6-1980

Current US Class

060/445
060/461
060/484
091/454
091/461

International Classes

F16H 039/46; F15B 011/16

Field of Search

60/444 60/445 60/452 60/460 60/461 60/468 60/470 60/484 60/DIG. 91/415 91/420 91/444 91/461 91/462 91/464 91/529 91/530 91/454 91/455

Assignee

Sperry Rand Corporation (Troy, MI)

Examiners

Geoghegan; Edgar W.

Attorney, Agent or Firm

Barnes, Kisselle, Raisch & Choate

US Patent References

3991571   Fluid system of a w...

Referenced by:

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Citation

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Abstract
A hydraulic control system comprising a hydraulic actuator having opposed openings adapted to alternately function as inlets and outlets for moving the element of the actuator in opposite directions and a variable displacement pump with loading sensing control for supplying fluid to said actuator. A meter-in valve is provided to which the fluid from the pump is supplied and a pilot controller alternately supplies fluid at pilot pressure to the meter-in valve for controlling the direction and displacement of movement of the meter-in valve and the direction and velocity of the actuator. A pair of lines extends from the meter-in valve to the respective openings of the actuator and a meter-out valve is associated with each line of the actuator for controlling the flow out of the actuator when that line to the actuator does not have pressure fluid from the pump applied thereto. Each meter-out valve is pilot operated by the pilot pressure from the controller.
 
Claims
We claim:

1. A hydraulic control system comprising

a hydraulic actuator having opposed openings adapted to alternately function as inlets and outlets for moving the element of the actuator in opposite directions,

a pump for supplying fluid to said actuator,

a meter-in valve to which the fluid from the pump is supplied,

said valve being pilot controlled,

a pilot controller for alternately supplying fluid at pilot pressure to said meter-in valve for controlling the direction of movement of the meter-in valve,

a pair of lines extending from said meter-in valve to said respective openings of said actuator,

a meter-out valve associated with each opening of the actuator for controlling the flow out of said actuator,



Description
This invention relates to power transmissions and particularly to hydraulic circuits for actuators such as are found in earth moving equipment including excavators and cranes.

BACKGROUND AND SUMMARY OF THE INVENTION

This invention relates to hydraulic systems for controlling a plurality of actuators such as hydraulic cylinders which are found, for example, in earth moving equipment such as excavators and cranes. In such a system, it is conventional to provide a pilot operated control valve for each actuator which is controlled by a manually operated controller through a pilot hydraulic circuit. The control valve functions to supply hydraulic fluid to the actuator to control the speed and direction of operation of the actuator. In addition, the control valve for each actuator controls the flow of hydraulic fluid out of the actuator. It is also common to provide counterbalance valves or fixed restrictions to control overrunning loads.

Among the objectives of the present invention are to provide a hydraulic system for accurately controlling the position and speed of operation of the actuators; which system is simple and easy to make and maintain; which system is unaffected by change of load pressure of various portions of the system or other actuators served by the same source; which system may not use flow from the pressure source in the case of overrunning loads on the actuators; wherein the control valves may be mounted adjacent the actuator for preventing loss of control of the load in case of malfunction in the hydraulic lines to the actuator; wherein the valves which control flow out of the actuator function to control the velocity in the case of energy generating loads; wherein the valve that controls flow into the actuator controls the velocity in the case of energy absorbing loads; wherein the valve system for each actuator can be mounted on its respective actuator and incorporates means for preventing uncontrolled lowering of the load in case of pressure failure due to breaking of the lines to the valve system; wherein the timing of operation of the valve controlling flow into the actuator and out of the actuator can be designed to accommodate the specific nature of the particular load.
 
  A known power steering system of the type in which movement of a steering wheel is transmitted via a torsion bar to an oil path switching valve to actuate...  A hydraulic control system comprising a hydraulic actuator having opposed openings adapted to alternately function as inlets and outlets for moving the...