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A Parametric Study on Electro Thermally Actuated Novel Compliant Microgripper

机译:电极热致动新型柔顺微逆潮的参数研究

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摘要

At Micron-level actuation, thermal gripper provides greater forces when compared with electrostatic mode of actuation. To accomplish larger translations at minimal voltages, the Electro thermal actuation is applied. The mechanism of selective non-uniform Joule heating; which helps in thermal expansion of the design owing to restraints. The gripper proposed in this work is analyzed using FEA and is fabricated using Aluminum and stainless steel to achieve quicker response. The in-plane displacement, strain, stress, current density and temperature have been predicted for different magnitudes of current-voltage combination that the gripper sustains. It was found that, micro gripper performs well under 1v giving 60 μm displacement. Parametric sweep was carried out using commercially available FEA software package; COMSOL Multiphysics, to study and asses the outcome of various parameters on the performance of the gripper. It has been observed that the displacement increases with the increase in applied voltage.
机译:在微米级致动时,与静电致动模式相比,热夹具提供更大的力。为了在最小电压下实现更大的转换,施加电热致动。选择性非均匀焦耳加热的机制;由于限制,这有助于对设计的热膨胀。使用FEA分析本作工作中提出的夹具,并使用铝和不锈钢制造,以实现更快的反应。对于夹持器维持的电流 - 电压组合的不同大小,已经预测了面内位移,应变,应力,电流密度和温度。发现,微夹持器在1V下执行良好,给出60μm位移。使用商用的FEA软件包进行参数扫描; COMSOL Multiphysics,研究和判断各种参数的结果对夹具的性能。已经观察到,随着施加电压的增加,位移增加。

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