Moog G761 Series Installation And Operation Instruction

Moog G761 Series Installation And Operation Instruction

Electrohydraulic servovalve

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1. INTRODUCTION

This manual provides instructions and procedures necessary to install,
operate and troubleshoot the Moog G761 Series Industrial Servovalve.
Troubleshooting instructions are outlined so that only the specific component(s)
suspected of failure may be identified.

2. OPERATION

The Moog G761 Series Industrial Servovalve consists of a polarized
electrical torque motor and two stages of hydraulic power amplification .The
motor armature extends into the air gaps of the magnetic flux circuit and is
supported in this position by a flexure tube member.The flexure tube acts as a
seal between the electromagnetic and hydraulic sections of the valve.The two
motor coils surround the armature, one on each side of the flexure tube.
The flapper of the first stage hydraulic amplifier is rigidly attached to the
midpoint of the armature.The flapper extends through the flexure tube and
passes between two nozzles, creating two variable orifices between the nozzle
tips and the flapper.The pressure controlled by the flapper and nozzle variable
orifice is fed to the end areas of the second stage spool.
The second stage is a conventional 4-way spool design in which output
flow from the valve, at a fixed valve pressure drop, is proportional to spool
displacement from the null position.A cantilever feedback spring is fixed to the
flapper and engages a slot at the center of the spool. Displacement of the spool
deflects the feedback spring which creates a force on the armature/flapper
assembly.
Input signal induces a magnetic charge in the armature and causes a
deflection of the armature and flapper.This assembly pivots about the flexure
tube and increases the size of one nozzle orifice and decreases the size of the
other.
This action creates a differential pressure from one end of the spool to the
other and results in spool displacement.The spool displacement transmits a
force in the feedback wire which opposes the original input signal torque. Spool
movement continues until the feedback wire force equals the input signal force.
CAUTION
DISASSEMBLY, MAINTENANCE, OR REPAIR OTHER THAN IN ACCORDANCE WITH THE
INSTRUCTIONS HEREIN OR OTHER SPECIFIC WRITTEN DIRECTIONS FROM MOOG WILL
INVALIDATE MOOG'S OBLIGATIONS UNDER ITS WARRANTY.
G761 Series Installation and
Operation Instruction
Electrohydraulic Servovalve

ELECTROHYDRAULIC VALVE CUT-AWAY

Coil
Armature
Nozzle
Feedback Wire
Spool
Filter
P
A
Figure 1 Moog Series G761
Upper Polepiece
Flexure Tube
Lower Polepiece
Flapper
Inlet Orifice
T
B
P x

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Summary of Contents for Moog G761 Series

  • Page 1 2. OPERATION The Moog G761 Series Industrial Servovalve consists of a polarized electrical torque motor and two stages of hydraulic power amplification .The motor armature extends into the air gaps of the magnetic flux circuit and is supported in this position by a flexure tube member.The flexure tube acts as a...
  • Page 2 4. INSTALLATION Part Description Qty. Part Number The Moog G761 Series Industrial Servovalve may be mounted in any G761 Series Filter Replacement Kit 1 B52555RK201K1 position, provided the servovalve pressure, piston and return ports match Filter Plug - Body O-Ring (1) 42082-60 respective manifold ports.
  • Page 3 10. AUTHORIZED REPAIR FACILITIES Remove the four socket head capscrews and lockwashers with 3mm Allen Moog does not authorize any facilities other than Moog or Moog subsidiaries to wrench. repair its servovalves. It is recommended you contact Moog at (716)655-3000 Remove the filter retainer.
  • Page 4 G761 SERIES INSTALLATION AND OPERATION INSTRUCTION NOTES 1 Valve Weight: 2.4 lbs (1.08 kg) [4.0 lbs (1.81 kg)] for steel body 1.750 44.45 2 Polarity: .874 A&C (+), B&D (-) produces flow out 22.20 port B 1.60 1.282 40.5 3 Manifold O-Rings 32.56...

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