TRIPOD TYPE CONSTANT VELOCITY UNIVERSAL JOINT

PROBLEM TO BE SOLVED: To reduce the number of part items and assembling man-hours of a washer for preventing a fall of rolling bodies installed in each leg shaft in a joint having rollers fitted to the leg shafts of a tripod member through several cylindrical rolling bodies freely to rotate. SOLUTIO...

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Hauptverfasser: OZAWA HITOHIRO, SAITO TAKESHI, GOTOU TATSUHIRO
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creator OZAWA HITOHIRO
SAITO TAKESHI
GOTOU TATSUHIRO
description PROBLEM TO BE SOLVED: To reduce the number of part items and assembling man-hours of a washer for preventing a fall of rolling bodies installed in each leg shaft in a joint having rollers fitted to the leg shafts of a tripod member through several cylindrical rolling bodies freely to rotate. SOLUTION: This constant velocity universal joint has the structure formed by fitting the cylindrical inner peripheral surface of the roller to the outer peripheral surface of three leg shafts 5 of the tripod member 4 through a series of several cylindrical rolling bodies 6 to assemble the tripod member 4. The cylindrical inner peripheral surface of the roller 7 is formed with a flange part 8 to be locked with an end surface of the rolling body 6 to prevent a fall of the rolling body 6 in the axial direction. This flange part 8 is utilized to assemble a constant number of rolling bodies 6 in the inner peripheral surface of the roller 7 with a keystone method to form an assembly hard to be disassembled, and the roller 7 is assembled in the leg shaft 5 at the same time with the rolling body 6.
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SOLUTION: This constant velocity universal joint has the structure formed by fitting the cylindrical inner peripheral surface of the roller to the outer peripheral surface of three leg shafts 5 of the tripod member 4 through a series of several cylindrical rolling bodies 6 to assemble the tripod member 4. The cylindrical inner peripheral surface of the roller 7 is formed with a flange part 8 to be locked with an end surface of the rolling body 6 to prevent a fall of the rolling body 6 in the axial direction. 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SOLUTION: This constant velocity universal joint has the structure formed by fitting the cylindrical inner peripheral surface of the roller to the outer peripheral surface of three leg shafts 5 of the tripod member 4 through a series of several cylindrical rolling bodies 6 to assemble the tripod member 4. The cylindrical inner peripheral surface of the roller 7 is formed with a flange part 8 to be locked with an end surface of the rolling body 6 to prevent a fall of the rolling body 6 in the axial direction. This flange part 8 is utilized to assemble a constant number of rolling bodies 6 in the inner peripheral surface of the roller 7 with a keystone method to form an assembly hard to be disassembled, and the roller 7 is assembled in the leg shaft 5 at the same time with the rolling body 6.</abstract><edition>7</edition><oa>free_for_read</oa></addata></record>
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subjects BLASTING
BRAKES
CLUTCHES
COUPLINGS FOR TRANSMITTING ROTATION
ENGINEERING ELEMENTS AND UNITS
GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVEFUNCTIONING OF MACHINES OR INSTALLATIONS
HEATING
LIGHTING
MECHANICAL ENGINEERING
THERMAL INSULATION IN GENERAL
WEAPONS
title TRIPOD TYPE CONSTANT VELOCITY UNIVERSAL JOINT
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