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A Table-Shaped Tactile Sensor for Detecting Triaxial Force on the Basis of Strain Distribution

Jeong‐Bong Lee, Min‐Gyu Kim, Mitsuhiro Shikida, Kazuo Sato

Year
2013
Citations
12
Access
Open access

Abstract

A slim and flexible tactile sensor applicable to the interaction of human and intelligent robots is presented. In particular, a simple sensing principle for decoupling of three-dimensional force is proposed. Sensitivity of the proposed tactile sensor is tested experimentally. To improve the sensitivity of the sensor, a table-shaped sensing element was designed. Table-shaped structure can convert an external acting force into concentrated internal stress. A “triaxial force decoupling algorithm” was developed by combining two-dimensional mapping data calculated by finite element analysis. The sensor was calibrated under normal and tangential forces. The external loads applied to the sensor could be decoupled independently as a function of the strain-gauge responses.

Keywords

Tactile sensorDecoupling (probability)Strain gaugeSensitivity (control systems)Finite element methodNormal forceAcousticsEngineeringComputer scienceMechanical engineering

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