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A novel SMA-based micro tactile display device for elasticity range of human soft tissues: Design and simulation

机译:一种用于人软组织弹性范围的新型SMA微触觉显示装置:设计与仿真

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A novel micro tactile display device to display the elasticity of human soft tissues is presented in this paper. The device consists of 16 units in the form of a 4 × 4 units array. Each unit consists of two substrates separated by a 1.75 mm spacer. The first substrate holds a stiffness display pin (1 mm × 1 mm) which is supported by two Shape Memory Alloy (SMA) springs in parallel to provide tunable stiffness. A strain gauge on top of this substrate is used to measure the force applied on that pin. The other substrate includes a planar coil forming a non-contact eddy current sensor that is used to measure the deflection of the pin when subjected to an external force. Both the strain gauge and the eddy current sensors provide feedback signals that are used for characterization and control of the stiffness. Finite element simulation shows that the stiffness range of the designed device matches the range of elasticity of human soft tissues and the eddy current sensor detects up to 1.75 mm deflection which is suitable for characterization purposes. The simulation also studies the cross talk that possibly happen among the eddy current sensors due to the magnetic field.
机译:显示人体软组织的弹性的新型微触觉显示设备呈现于本文。该装置由16个单元中的4×4单元阵列的形式。每个单位包括由1.75毫米间隔区隔开的两个衬底。所述第一基板保持它由两个形状记忆合金(SMA)弹簧平行支撑,以提供可调谐的刚度的刚性显示器销(1 1mm×1mm的)。在此基片的顶部上的应变仪用来测量施加该销上的力。其它基片包括平面线圈形成,用于当受到外力以测量所述销的偏转的非接触涡电流传感器。两个应变仪和涡流传感器提供用于表征和刚度的控制反馈信号。有限元仿真结果表明,设计的装置的刚度范围人体软组织和涡电流传感器检测最多1.75毫米偏转其适合于表征目的的弹性范围内相匹配。该模拟还研究了串扰的电涡流传感器之间可能发生因磁场。

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