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Adaptive tuned vibration absorber based on magnetorheological elastomer-shape memory alloy composite

机译:基于磁流变弹性体形状记忆合金复合材料的自适应调谐减振器

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摘要

Shape memory alloy (SMA) is an attractive smart material which could be used as stiffness tuning element in adaptive tuned vibration absorber (ATVA). The sharp modulus change in SMA material during phase transformation creates difficulties for smooth tuning to track forcing frequency to minimize vibrations of primary system. However, high hysteresis damping at low temperature martensitic phase degrades performance of vibration absorber. This paper deals with the study of dynamic response of system in which SMA and magnetorheological elastomer (MRE) are combined together to act as a smart spring- mass-damper system in a tuned vibration absorber. This composite is used as two way stiffness tuning element in ATVA for smooth and continuous tuning and to minimize the adverse effect at low temperature by increasing equivalent stiffness. The stiffnesses of SMA element and MRE are varied respectively by changing temperature and strength of external magnetic field. The two way stiffness tuning ability and adaptivity have been demonstrated analytically and experimentally. The experimental results show good agreement with analytical results. The proposed composite is able to shift the stiffness consequently the natural frequency of primary system as well as reduce the vibration level of primary system by substantial mount.
机译:形状记忆合金(SMA)是一种有吸引力的智能材料,可以用作自适应调谐减震器(ATVA)的刚度调节元件。相变过程中SMA材料的急剧模量变化给平滑调整以跟踪强制频率以最大程度减小初级系统的振动带来了困难。但是,低温马氏体相的高磁滞阻尼会降低吸振器的性能。本文研究了系统的动态响应,在该系统中,SMA和磁流变弹性体(MRE)结合在一起,用作调谐减振器中的智能弹簧-阻尼器系统。该复合材料在ATVA中用作双向刚度调节元件,可进行平滑和连续的调节,并通过增加等效刚度来最小化低温下的不利影响。 SMA元件和MRE的刚度随温度和外部磁场强度的变化而变化。通过分析和实验证明了两种方法的刚度调节能力和适应性。实验结果与分析结果吻合良好。所提出的复合材料能够改变刚度,从而通过一次安装降低了一次系统的固有频率,并降低了一次系统的振动水平。

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