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Active Vibration Damping and Control using SMA Foil-based Devices

机译:基于SMA箔的装置的主动振动阻尼和控制

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The damping and vibration control behaviour of shape memory alloy (SMA) foil-based devices exhibiting the one-way effect at room temperature are investigated under various pre-straining and loading conditions. The active components consist of SMA microbridges of 30 micrometer and folded SMA microbeams of 100 micrometer thickness having widths and lengths in the range of 100 to 300 micrometer and several mm, respectively. Test structures consisting of a single SMA microbridge exhibit a high specific damping capacity (SDC) of about 86% under quasi-stationary loading conditions. Active vibration damping is investigated on single degree-of-freedom damper systems consisting of SMA microbridge devices, which reveal a SDC of up to 90% in free oscillation experiments. Active vibration control is investigated on devices consisting of folded SMA microbeams allowing for reduction of excitation amplitude by 83%.
机译:在各种预拉伸和装载条件下,研究了表现在室温下表现出单向效果的形状记忆合金(SMA)箔的装置的阻尼和振动控制行为。活性组件由30微米的SMA微生物组成,折叠的SMA微沟,100微米厚度,宽度和长度在100至300微米的范围内,分别为几毫米。由单个SMA微生物组成的测试结构在准固定式负载条件下表现出约86%的高特定阻尼能力(SDC)。研究了由SMA Microbridge器件组成的单一自由度阻尼系统的主动振动阻尼,其在自由振荡实验中显示出高达90%的SDC。研究了由折叠的SMA微沟组成的装置上研究了主动振动控制,允许将激发幅度降低83%。

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