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Controlled continuous tuning of an adaptively tunable vibration absorber incorporating shape memory alloys

机译:控制连续调谐适用于形状记忆合金的自适应可调谐振动吸收器

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Controled continuous tuning of the stiffness of shape memory alloy (SMA) spring elements of an adaptively tunable vibration absorber (ATVA) is a novel concept for adaptive-passive vibration control. Minimization of the vibration of a primary system is achieved indirectly via stiffness control of the SMA structural elements supporting a secondary mass. Stiffness control is further achieved via the heatig of the SMA elements. In this paper a control law to achieve phase-Stiffness control is further achieved via the heating of the SMA elements. In this paper a control law to achieve phase-tracking by controlling the meating of the SMA elements is developed and implemented. Successful analytical and experimental results demonstrate the feasibility of continuous control of the SMA ATVA. Performance of the SMA ATVA is compared to the performance of comparable passive tuned vibration absorbers (TVA). The comparison shows that substantial improvements in vibration attenuation can be achieved through the implementation of the SMA ATVA.
机译:自适应可调减振器(ATVA)的形状记忆合金(SMA)的弹簧元件的刚度的Controled连续调谐是自适应被动振动控制的新颖的概念。一个主系统的振动的最小化是通过支承辅块的SMA结构元件的刚度控制间接实现。刚度控制经由SMA元件的heatig进一步实现。在本文中的控制规则,以实现相位刚度控制经由所述SMA元件的加热被进一步实现。本文提出了一种控制律来实现相位跟踪通过控制SMA元件的meating制定并实施。成功的分析和实验结果表明,该SMA ATVA的连续控制的可行性。所述SMA ATVA的性能进行比较,比较的被动调谐的振动吸收器(TVA)的性能。比较结果显示,在振动衰减实质性的改进可通过SMA ATVA的执行来实现。

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