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US Patent 11618232 Apparatus for controlling the switch-over of hydraulic cylinders

Patent 11618232 was granted and assigned to Moog on April, 2023 by the United States Patent and Trademark Office.

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Contents

Is a
Patent
Patent
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Patent attributes

Patent Applicant
Moog
Moog
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Current Assignee
Moog
Moog
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Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
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Patent Number
116182320
Patent Inventor Names
Werner Haendle0
Dirk Becher0
Christoph Boes0
Achim Helbig0
Date of Patent
April 4, 2023
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Patent Application Number
166349950
Date Filed
August 1, 2018
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Patent Citations
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US Patent 10302101 Hydraulic drive with rapid stroke and load stroke
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US Patent 10626889 Hydraulic system
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US Patent 11384778 Electro-hydrostatic actuator system
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Patent Primary Examiner
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Dustin T Nguyen
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CPC Code
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F15B 2211/27
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F15B 7/006
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F15B 11/022
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F15B 2211/20515
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F15B 2211/20546
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F15B 2211/6651
0
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F15B 2211/20561
0
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F15B 2211/7128
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...

An electro-hydrostatic drive for realizing a rapid movement during a rapid movement phase, a force-building movement during a force-building movement phase. The apparatus comprises a hydro-machine with variable volume and/or rotational speed, driven by an electric motor, for providing a volume-stream of a hydraulic fluid, a first cylinder with a piston chamber, an rod chamber, and a plunger rod, a reservoir, a pressure source, a relief valve, a check valve, a fluid connection between the piston chamber and the hydro-machine, a fluid connection between the rod chamber and the hydro-machine, a fluid connection between the piston chamber and the reservoir, a fluid connection between the rod-chamber-side port of the hydro-machine and the reservoir, a fluid connection, through the relief valve, between the reservoir and the pressure source. The relief valve is for pressure safety of the reservoir, and the check valve has a fluid connection from the pressure source to the rod-chamber-side port of the hydro-machine, during the rapid movement phase, a first part of the hydraulic fluid is piped through the fluid connection between the piston chamber and the hydro-machine and the fluid connection between the rod chamber and the hydro-machine, and a second part of the hydraulic fluid communicates through the fluid connection between the piston chamber and the reservoir, during the force-building movement phase, a first part of the hydraulic fluid is piped through the fluid connection between the piston chamber and the hydro-machine and the fluid connection between the rod chamber and the hydro-machine, and a second part of the hydraulic fluid is piped through the fluid connection between the rod-chamber-side port of the hydro-machine and the reservoir.

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