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Theoretical analysis and experiment research of a statically indeterminate pre-stressed six-axis force sensor

✍ Scribed by Jiantao Yao; Yulei Hou; Jie Chen; Ling Lu; Yongsheng Zhao


Publisher
Elsevier Science
Year
2009
Tongue
English
Weight
605 KB
Volume
150
Category
Article
ISSN
0924-4247

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✦ Synopsis


This paper presents the theoretical analysis and experiment research of a novel statically indeterminate six-axis force sensor based on a modified Stewart platform architecture. The characteristic of the prestressed structure is analyzed in comparison with the traditional Stewart platform-based force sensor. The force-distribution problem of the seven-limb statically indeterminate structure is solved by considering the stiffness properties and compatibility in deformations, and the sensor's force mapping matrix including the effect of the seventh limb is obtained. The isotropy performance of the sensor is studied, and the analytic relations of key structural parameters leading to isotropic configuration are obtained. The pre-tightening force is determined by solving the conditional extremum of the Lagrange function. The sensor prototype and the calibration device are manufactured, and the experiment results prove the superiority of the structure and the correctness of the theoretical analysis.