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Damage Evolution during Actuation Fatigue in Shape Memory Alloys

机译:形状记忆合金致动疲劳期间的损伤演变

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Shape Memory Alloys (SMAs) are unique materials able to undergo a thermomechanically induced, reversible phase transformation. Additionally, SMA are subject to two types of fatigue, that is structural fatigue due to cyclic loading as experienced by most materials, as well as actuation fatigue due to repeated thermally induced phase transformation. The evolution of multiple material characteristics is presented over the actuation fatigue lifetime of NiTiHf actuators, including the accumulation of irrecoverable strain, the evolution of internal voids, and the evolution of the effective modulus of the actuator. The results indicate that all three of these material characteristics are clearly interconnected and careful analysis of each of these characteristics can help to understand the evolution of the others, as well as help to understand how actuation fatigue leads to ultimate failure of the actuator.
机译:形状记忆合金(SMA)是能够经历热机械诱导的可逆相变的独特材料。另外,SMA受到两种类型的疲劳,这是由于大多数材料经历的循环负载引起的结构疲劳,以及由于重复的热诱导的相变导致的致动疲劳。在NITIHF致动器的致动疲劳寿命上提出了多种材料特性的演变,包括不可恢复的应变,内部空隙的演变和致动器的有效模量的累积。结果表明,所有三种这些材料特征都明显相互互连,并且对这些特征的仔细分析可以有助于理解其他特征的进展,以及有助于了解致动疲劳如何导致执行器的最终失效。

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