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首页> 外文期刊>Journal of Materials Engineering and Performance >Actuators and Drivers Based on CuAlNi Shape Memory Single Crystals
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Actuators and Drivers Based on CuAlNi Shape Memory Single Crystals

机译:基于CuAlNi形状记忆单晶的执行器和驱动器

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摘要

Our research reported here is concerned with the development of physical aspects of shape memory linear actuators and drivers made from CuAlNi single crystals. Our study is focused on reactive stress generation and reversible deformation in the clamped CuAlNi single crystals due to martensitic transformations during thermal cycling. The crystals can reproduce force generation in heating to 560 K for many times, and one time in heating to 700 K with the maximal stress 350 MPa. The theoretical model and calculations of linear actuators that use shape memory single crystals is discussed and we also demonstrate real model of an actuator based on these crystals.
机译:我们在这里报道的研究与由CuAlNi单晶制成的形状记忆线性致动器和驱动器的物理方面的发展有关。我们的研究重点是在热循环过程中由于马氏体相变而在固位CuAlNi单晶中产生反作用应力和可逆变形。晶体在多次加热到560 K时可以再生力的产生,而在最大应力为350 MPa的情况下在加热到700 K时可以再生的力。讨论了使用形状记忆单晶的线性执行器的理论模型和计算,我们还演示了基于这些晶体的执行器的真实模型。

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