IP Library Granted Patent US 9,328,747
Granted Patent B2
US 9,328,747 · App. 13/843,902 · Granted May 3, 2016

Servo actuator load vector generating system

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Quick Facts
Patent No.
US 9,328,747
App. No.
13/843,902
Granted
May 3, 2016
Kind
B2
Abstract

A servo actuator system and method of operating the same includes a dual acting actuator comprising an actuator body and a movable member movable in the actuator body to define a first and second chamber on each side of the movable member. A first port is fluidly coupled to the first chamber and a second port is fluidly coupled to the second chamber. A fluid pump having a return is provided. A proportional valve assembly is fluidly coupled to the fluid pump, return and the first and second ports. The proportional valve assembly includes a plurality of metering orifices. A controller is operably coupled to the proportional valve assembly to control the plurality of metering orifices to generate a load vector having magnitude and direction and wherein an actual position of a movable member in an actuator body is indeterminate.

Claims (35)

1. A servo actuator system comprising:

a dual acting actuator comprising:

an actuator body;

a movable member movable in the actuator body to define a first and second chamber on each side of the movable member;

a first port fluidly coupled to the first chamber; and

a second port fluidly coupled to the second chamber;

a fluid pump having a return;

a servo assembly fluidly coupled to the fluid pump, return and the first and second ports, the servo assembly having a plurality of metering orifices; and

a controller operably coupled to the servo assembly to operate the servo actuator system in a first state and a second state, wherein in the first state the controller controls each of the plurality of metering orifices such that fluid from the pump flows to the return and fluid transfers freely in and out of the ports with an external force applied to the movable member, and wherein in the second state the controller controls each of the plurality of metering orifices such that fluid pressure from the pump causes a load to be applied to the movable member in the actuator body while allowing cross flow of fluid between the first and second ports.

2. The servo actuator system of claim 1 wherein the actuator comprises a linear actuator.

3. The servo actuator system of claim 1 wherein the actuator comprises a rotary actuator.

4. The servo actuator system of claim 1 wherein the controller in the second state controls a first metering orifice to inhibit fluid flow therethrough while controlling a second metering orifice to allow fluid flow therethrough at a rate greater than that of a rate through the first metering orifice.

5. The servo actuator system of claim 1 wherein the servo assembly comprises four metering orifices and four ports, wherein a unique pair of metering orifices is fluidly connected to each port and each metering orifice controls fluid flow between a unique pair of ports.

6. The servo actuator system of claim 5 wherein the controller in the second state controls a first metering orifice and a second metering orifice to inhibit fluid flow therethrough while controlling a third metering orifice and a fourth metering orifice to allow fluid flow therethrough at a rate greater than that of a rate through the first metering orifice.

7. A method of controlling an actuator system having an actuator body, a movable member movable in the actuator body to define a first and second chamber on each side of the movable member, a first port fluidly coupled to the first chamber, a second port fluidly coupled to the second chamber, a fluid pump having a return, and a servo assembly fluidly coupled to the fluid pump, return and the first and second ports, the servo assembly having a plurality of metering orifices, the method comprising:

selectively operating the actuator system in a first state and a second state,

wherein the first state comprises:

controlling each of the plurality of metering orifices with a controller such that fluid from the pump flows to the return and fluid transfers freely in and out of the ports with an external force applied to the movable member; and

wherein the second state comprises:

controlling each of the plurality of metering orifices with the controller such that fluid pressure from the pump causes a load to be applied to the movable member in the actuator body while allowing cross flow of fluid between the first and second ports.

8. The method of claim 7 wherein the actuator comprises a linear actuator.

9. The method of claim 8 wherein the actuator comprises a rotary actuator.

10. The method of claim 7 wherein the servo assembly comprises four metering orifices and four ports, wherein a unique pair of metering orifices is fluidly connected to each port and each metering orifice controls fluid flow between a unique pair of ports, and wherein controlling each of the metering orifices in the second state comprises:

controlling a first metering orifice and a second metering orifice to inhibit fluid flow therethrough while controlling a third metering orifice and a fourth metering orifice to allow fluid flow therethrough at a rate greater than that of a rate through the first metering orifice.

11. A servo actuator system comprising:

a dual acting actuator comprising:

an actuator body;

a movable member movable in the actuator body to define a first and second chamber on each side of the movable member;

a first port fluidly coupled to the first chamber; and

a second port fluidly coupled to the second chamber;

a fluid pump having a return;

a servo assembly fluidly coupled to the fluid pump, return and the first and second ports, the servo assembly having a plurality of metering orifices; and

a controller operably coupled to the servo assembly to control the plurality of metering orifices to generate a vector having magnitude and direction and wherein an actual position of a movable member in an actuator body is indeterminate while allowing cross flow of fluid between the first and second ports.

12. The servo actuator system of claim 11 wherein the actuator comprises a linear actuator and the vector comprises a force.

13. The servo actuator system of claim 11 wherein the actuator comprises a rotary actuator and the vector comprises a torque.

Assignments (3)
RELEASE OF SECURITY INTEREST Recorded Apr 13, 2021
From: JPMORGAN CHASE BANK, N.A., AS ADMINISTRATIVE AGENT
To: MTS SYSTEMS CORPORATION
Reel/Frame 055911/0315 →
SUPPLEMENTAL CONFIRMATORY GRANT OF SECURITY INTEREST IN UNITED STATES PATENTS Recorded Jul 5, 2016
From: MTS SYSTEMS CORPORATION
To: JPMORGAN CHASE BANK, N.A., AS ADMINISTRATIVE AGENT
Reel/Frame 039258/0587 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 1, 2013
From: GRENIER, GLEN CHARLES
To: MTS SYSTEMS CORPORATION
Reel/Frame 030722/0702 →