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Miniature Robot with Actuators Based on CU-AL-NI Shape Memory Single Crystals

机译:基于CU-AL-NI形状记忆单晶的带执行器的微型机器人

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We report on further progress in design of miniature robots based on shape memory actuators. The distinguishing feature of the proposed design is the use of actuators based on single crystal shape memory alloy. Such actuators demonstrate record parameters for robotic applications due to anisotropy and low density of lattice defects. In contrast to actuators based on polycrystalline Ti-Ni alloy, Cu-Al-Ni single crystals exhibit a complete recovery of shape memory strain during cyclic operation and a wide operating temperature range. We developed a mathematical model of a linear actuator with a flexural force element based on Cu-Al-Ni shape memory crystals and present a design of robot using these actuators for object manipulation.
机译:我们报告了基于形状记忆执行器的微型机器人设计的进一步进展。提出的设计的显着特征是使用基于单晶形状记忆合金的执行器。由于各向异性和晶格缺陷的低密度,这种致动器展示了用于机器人应用的记录参数。与基于多晶Ti-Ni合金的执行器相比,Cu-Al-Ni单晶在循环操作和宽工作温度范围内均能完全恢复形状记忆应变。我们基于Cu-Al-Ni形状记忆晶体开发了带有弯曲力元件的线性执行器的数学模型,并提出了使用这些执行器进行对象操纵的机器人设计。

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