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首页> 外文期刊>Smart Materials & Structures >Thermo-mechanical behavior of shape memory alloy spring actuated using novel scanning technique powered by ytterbium doped continuous fiber laser
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Thermo-mechanical behavior of shape memory alloy spring actuated using novel scanning technique powered by ytterbium doped continuous fiber laser

机译:形状记忆合金弹簧的热力学行为采用新型扫描技术致电YTTerbium掺杂连续光纤激光器

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摘要

A novel scanning technique for the contactless laser actuation of shape memory alloy spring is presented in this paper. The influence of laser power on the actuation behavior is studied in detail for the power ranges from 5 to 50W with bias loads of 1.5, 2.5 and 3.5 N. The scanning of the laser beam over the spring increases the temperature of the spring in proportion to the number of scans performed on the spring. With the increase in power, the scanning required for complete actuation decreases. A maximum of 8 passes was required to attain complete actuation for a bias load of 3.5 N at 15 W, whereas only 1 pass is required for actuation against the same bias load above 35 W. A maximum displacement of 28.9 mm was attained for a bias load of 3.5 N at 50 W. The heat generated during the laser interaction and its distribution in the coils of the spring is studied in detail using COMSOL Multiphysics.
机译:本文提出了一种用于非接触式记忆合金弹簧的非接触式激光致动的扫描技术。 对激光功率对致动行为的影响进行了详细研究了从5到50W的功率范围,偏置载荷为1.5,2.5和3.5 n。弹簧上的激光束扫描增加了弹簧的温度成比例 在弹簧上执行的扫描数。 随着功率的增加,完全致动所需的扫描减小。 最多需要8个通道来获得15W的偏置载荷的完全致动,而仅在35W上方的相同偏置载荷致动时仅需1次通过。偏差达到28.9mm的最大位移 使用COMSOL Multiphysics详细研究了在50W的50 W处为3.5 n的负载。

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