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Thermal buckling of laminated composite beams with embedded shape memory alloy actuators

机译:嵌入式形状记忆合金作动器的层合复合梁的热屈曲

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摘要

In this paper, the thermal buckling and postbuckling behaviours of a composite beam with embedded shape memory alloy (SMA) wires are investigated experimentally and analytically. For the purpose of enhancing the critical buckling temperature and reduction of the lateral deflection on thermal buckling and postbuckling, the characteristics of thermal buckling are investigated through the use of the shape recovery force. The results of thermal buckling tests using uniformly heated and clamped composite beam specimens with embedded SMA wire actuators are discussed. The temperature-load-deflection behaviour records present quantitatively how the shape recovery force affects the thermal buckling behaviour, For this experiment, we considered the initial geometric imperfections, the slenderness ratio of the beam and the embedding position of the SMA wire actuators. The experimental results show that the shape recovery force reduces the thermal expansion of the composite laminated beam. This results in an increase of the critical buckling temperature and a reduction of the lateral deflection of the beams.
机译:本文通过实验和分析方法研究了带有形状记忆合金丝的复合材料梁的热屈曲和后屈曲行为。为了提高临界屈曲温度并减小热屈曲和后屈曲时的侧向挠度,利用形状恢复力研究了热屈曲的特性。讨论了使用带有嵌入式SMA导线执行器的均匀加热和夹紧的复合梁试样进行热屈曲测试的结果。温度-载荷-挠曲行为记录定量地显示了形状恢复力如何影响热屈曲行为。对于此实验,我们考虑了初始几何缺陷,梁的细长比和SMA导线执行器的嵌入位置。实验结果表明,形状恢复力降低了复合层合梁的热膨胀。这导致临界屈曲温度的增加和梁的横向偏转的减小。

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