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美國(guó)摩根伺服閥G761系列樣本
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  • 美國(guó)摩根伺服閥G761系列樣本G761 SERIES SERVOVALVES
    The G761 Series flow control
    servovalves are throttle valves
    for 3- and preferably 4-way
    applications.They are a high
    performance, two-stage design
    that covers the range of rated
    flows from 1 to 16.5 gpm at
    1000 psi valve drop.The
    output stage is a closed center,
    four-way, sliding spool.The pilot
    stage is a symmetrical double-nozzle and flapper, driven by a
    double air gap, dry torque
    motor. Mechanical feedback of
    the spool position is provided
    by a cantilever spring.The valve
    design is simple and rugged for
    dependable, long life operation.
    These valves are suitable for
    electrohydraulic position,
    speed, pressure or force con-trol systems with high dynamic
    response requirements.
    Principle of operation
    An electrical command signal
    (flow rate set point) is applied
    to the torque motor coils and
    creates a magnetic force, which
    acts on the ends of the pilot
    stage armature.This causes a
    deflection of armature/flapper
    assembly within the flexure
    tube. Deflection of the flapper
    restricts fluid flow through one
    nozzle, which is carried through
    to one spool end, displacing
    the spool.
    Movement of the spool opens
    the supply pressure port (P) to
    one control port, while simul-taneously opening the tank
    port (T) to the other control
    port.The spool motion also
    applies a force to the cantilever
    spring, creating a restoring
    torque on the armature/flapper
    assembly. Once the restoring
    torque becomes equal to the
    torque from the magnetic
    forces, the armature/flapper
    assembly moves back to the
    neutral position, and the spool
    is held open in a state of equi-librium until the command sig-nal changes to a new level.
    In summary, the spool position
    is proportional to the input
    current.With constant pressure
    drop across the valve, flow to
    the load is proportional to the
    spool position...
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