DRIVING CYLINDER

PROBLEM TO BE SOLVED: To enable execution of a continuous positional control, to make a shaft stop surely without overrunning a target point and to improve the sphere of usage and the reliability of a fluid pressure actuator. SOLUTION: A magnet 10 for position detection which constitutes a position...

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1. Verfasser: YONEDA TATSUMI
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creator YONEDA TATSUMI
description PROBLEM TO BE SOLVED: To enable execution of a continuous positional control, to make a shaft stop surely without overrunning a target point and to improve the sphere of usage and the reliability of a fluid pressure actuator. SOLUTION: A magnet 10 for position detection which constitutes a position detecting device is provided on an auxiliary shaft 5 which is engaged with a fitting ring 7 provided perpendicularly to the axis of a shaft 3 and is disposed outside 6 a cylinder case 2 and in parallel thereto. Since the auxiliary shaft 5 reciprocates in linkage with the shaft 3, the magnet 10 for position detection moves with the movement of the shaft 3 and a plurality of magnetic poles 23, 24, 25 and 26 are detected by a first magnetic sensor 17 and a second magnetic sensor 18. As the result, the shaft 3 can be decelerated on this side of a first point and a second point.
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SOLUTION: A magnet 10 for position detection which constitutes a position detecting device is provided on an auxiliary shaft 5 which is engaged with a fitting ring 7 provided perpendicularly to the axis of a shaft 3 and is disposed outside 6 a cylinder case 2 and in parallel thereto. Since the auxiliary shaft 5 reciprocates in linkage with the shaft 3, the magnet 10 for position detection moves with the movement of the shaft 3 and a plurality of magnetic poles 23, 24, 25 and 26 are detected by a first magnetic sensor 17 and a second magnetic sensor 18. 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SOLUTION: A magnet 10 for position detection which constitutes a position detecting device is provided on an auxiliary shaft 5 which is engaged with a fitting ring 7 provided perpendicularly to the axis of a shaft 3 and is disposed outside 6 a cylinder case 2 and in parallel thereto. Since the auxiliary shaft 5 reciprocates in linkage with the shaft 3, the magnet 10 for position detection moves with the movement of the shaft 3 and a plurality of magnetic poles 23, 24, 25 and 26 are detected by a first magnetic sensor 17 and a second magnetic sensor 18. 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SOLUTION: A magnet 10 for position detection which constitutes a position detecting device is provided on an auxiliary shaft 5 which is engaged with a fitting ring 7 provided perpendicularly to the axis of a shaft 3 and is disposed outside 6 a cylinder case 2 and in parallel thereto. Since the auxiliary shaft 5 reciprocates in linkage with the shaft 3, the magnet 10 for position detection moves with the movement of the shaft 3 and a plurality of magnetic poles 23, 24, 25 and 26 are detected by a first magnetic sensor 17 and a second magnetic sensor 18. As the result, the shaft 3 can be decelerated on this side of a first point and a second point.</abstract><edition>6</edition><oa>free_for_read</oa></addata></record>
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subjects BLASTING
CYLINDERS
DETAILS OF FLUID-PRESSURE SYSTEMS, NOT OTHERWISE PROVIDED FOR
ENGINEERING ELEMENTS AND UNITS
FLUID-PRESSURE ACTUATORS
FLUID-PRESSURE ACTUATORS, e.g. SERVO-MOTORS
GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVEFUNCTIONING OF MACHINES OR INSTALLATIONS
HEATING
HYDRAULICS OR PNEUMATICS IN GENERAL
LIGHTING
MEASURING
MEASURING ANGLES
MEASURING AREAS
MEASURING IRREGULARITIES OF SURFACES OR CONTOURS
MEASURING LENGTH, THICKNESS OR SIMILAR LINEARDIMENSIONS
MECHANICAL ENGINEERING
PHYSICS
PISTONS
SEALINGS
SYSTEMS ACTING BY MEANS OF FLUIDS IN GENERAL
TESTING
THERMAL INSULATION IN GENERAL
WEAPONS
title DRIVING CYLINDER
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