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首页> 外文期刊>Journal of Materials Engineering and Performance >Factors Controlling Superelastic Damping Capacity of SMAs
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Factors Controlling Superelastic Damping Capacity of SMAs

机译:SMAs超弹性阻尼能力的控制因素

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摘要

In this paper, questions linked to the practical use of superelastic damping exploiting stress-induced martensitic transformation for vibration damping are addressed. Four parameters, particularly vibration amplitude, prestrain, temperature of surroundings, and frequency, are identified as having the most pronounced influence on the superelastic damping. Their influence on superelastic damping of a commercially available superelastic NiTi wire was experimentally investigated using a self-developed dedicated vibrational equipment. Experimental results show how the vibration amplitude, frequency, prestrain, and temperature affect the capacity of a superelastic NiTi wire to dissipate energy of vibrations through the superelastic damping. A special attention is paid to the frequency dependence (i.e., rate dependence) of the superelastic damping. It is shown that this is nearly negligible in case the wire is in the thermal chamber controlling actively the environmental temperature. In case of wire exposed to free environmental temperature in actual damping applications, however, the superelastic damping capacity significantly decreases with increasing frequency. This was explained to be a combined effect of the heat effects affecting the mean wire temperature and material properties with the help of simulations using the heat equation coupled phenomenological SMA model.
机译:在本文中,解决了与超弹性阻尼的实际应用相关的问题,超弹性阻尼利用应力诱导的马氏体相变进行阻尼。四个参数,特别是振动幅度,预应变,环境温度和频率,被确定为对超弹性阻尼的影响最大。使用自行开发的专用振动设备,通过实验研究了它们对市售超弹性NiTi线的超弹性阻尼的影响。实验结果表明,振动幅度,频率,预应力和温度如何影响超弹性NiTi线通过超弹性阻尼耗散振动能量的能力。特别注意超弹性阻尼的频率依赖性(即速率依赖性)。结果表明,如果金属丝在热室中主动控制环境温度,则几乎可以忽略不计。但是,在实际的减震应用中,如果电线暴露在自由的环境温度下,则超弹性的减震能力会随着频率的增加而显着降低。借助热方程耦合现象学SMA模型进行的模拟,可以解释这是热影响平均线温度和材料性能的综合影响。

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