MECHANICAL QUANTITY SENSOR
PROBLEM TO BE SOLVED: To provide a mechanical quantity sensor which is simple in structure, capable of obtaining a high reliability, and easy in adjustment of preload. SOLUTION: The mechanical quantity sensor is composed of the outer ring part 2, the internal ring part 3 and the load sensors 4 inter...
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creator | OZAWA TADAO MAKINO HIROAKI ASAI MITSURU |
description | PROBLEM TO BE SOLVED: To provide a mechanical quantity sensor which is simple in structure, capable of obtaining a high reliability, and easy in adjustment of preload. SOLUTION: The mechanical quantity sensor is composed of the outer ring part 2, the internal ring part 3 and the load sensors 4 interposed between the outer ring part 2 and the internal ring part 3. The internal surface of the outer ring part 2 is formed in a chevron shape 20 by the first surface 21 and second surface 22 making the angle of α (α |
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SOLUTION: The mechanical quantity sensor is composed of the outer ring part 2, the internal ring part 3 and the load sensors 4 interposed between the outer ring part 2 and the internal ring part 3. The internal surface of the outer ring part 2 is formed in a chevron shape 20 by the first surface 21 and second surface 22 making the angle of α (α<180°), and the outer surface of the internal ring part 3 is formed in V shape 30 by the third surface 31 and the fourth surface 32 making the angle of β (β=360°-α). Between the first surface 21 and third surface 31 and between the second surface 22 and the fourth surface 32 the load sensors 4 are interposed. The internal ring part 3 is composed of two separable parts 301 and 302 for separating the third surface 31 and the fourth surface 32, and the shim 65 is interposed between them for adjusting the distance therebetween. By changing the thickness of the shim 65 the preload to the load sensor elements 4 is made to constitute adjustably. 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SOLUTION: The mechanical quantity sensor is composed of the outer ring part 2, the internal ring part 3 and the load sensors 4 interposed between the outer ring part 2 and the internal ring part 3. The internal surface of the outer ring part 2 is formed in a chevron shape 20 by the first surface 21 and second surface 22 making the angle of α (α<180°), and the outer surface of the internal ring part 3 is formed in V shape 30 by the third surface 31 and the fourth surface 32 making the angle of β (β=360°-α). Between the first surface 21 and third surface 31 and between the second surface 22 and the fourth surface 32 the load sensors 4 are interposed. The internal ring part 3 is composed of two separable parts 301 and 302 for separating the third surface 31 and the fourth surface 32, and the shim 65 is interposed between them for adjusting the distance therebetween. By changing the thickness of the shim 65 the preload to the load sensor elements 4 is made to constitute adjustably. 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SOLUTION: The mechanical quantity sensor is composed of the outer ring part 2, the internal ring part 3 and the load sensors 4 interposed between the outer ring part 2 and the internal ring part 3. The internal surface of the outer ring part 2 is formed in a chevron shape 20 by the first surface 21 and second surface 22 making the angle of α (α<180°), and the outer surface of the internal ring part 3 is formed in V shape 30 by the third surface 31 and the fourth surface 32 making the angle of β (β=360°-α). Between the first surface 21 and third surface 31 and between the second surface 22 and the fourth surface 32 the load sensors 4 are interposed. The internal ring part 3 is composed of two separable parts 301 and 302 for separating the third surface 31 and the fourth surface 32, and the shim 65 is interposed between them for adjusting the distance therebetween. By changing the thickness of the shim 65 the preload to the load sensor elements 4 is made to constitute adjustably. COPYRIGHT: (C)2006,JPO&NCIPI</abstract><oa>free_for_read</oa></addata></record> |
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subjects | MEASURING MEASURING FORCE, STRESS, TORQUE, WORK, MECHANICAL POWER,MECHANICAL EFFICIENCY, OR FLUID PRESSURE PHYSICS TESTING |
title | MECHANICAL QUANTITY SENSOR |
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