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首页> 外文期刊>Journal of intelligent material systems and structures >Analysis of nonlinear free vibration and damping of a clamped-clamped beam with embedded prestrained shape memory alloy wires
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Analysis of nonlinear free vibration and damping of a clamped-clamped beam with embedded prestrained shape memory alloy wires

机译:嵌有预应力形状记忆合金丝的夹紧梁的非线性自由振动和阻尼分析

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摘要

Nonlinear free vibration and damping of a clamped-clamped composite beam containing shape memory alloy wires with different prestrains embedded in the midsurface are investigated. The constitutive relations of shape memory alloy are considered in the large deflection response of the elastic Euler-Bernoulli beam, and Hamilton's principle is used to derive differential equation of the beam motion with extensible midplane. Considering midplane stretching due to tension in the shape memory alloy wires provides an ability to model damping in a nonlinear analysis although there is no distinct damping expression in the governing equation of motion. The results show a gradual decrease in the free vibration amplitude of the beam until it reaches a fully elastic response while this cannot be seen in linear models. Free vibrations of the beam are investigated, and time response, phase diagram, state of stress and strain in the wires, and variations of loss factor are studied. The effect of prestrain in the shape memory alloy wires on the final stable vibration amplitude and loss factor in free vibrations of the beam is also investigated.
机译:研究了包含预应力不同的形状记忆合金线夹固的复合材料梁的非线性自由振动和阻尼。在弹性Euler-Bernoulli梁的大挠度响应中考虑了形状记忆合金的本构关系,并利用汉密尔顿原理导出了具有可扩展中平面的梁运动的微分方程。尽管在运动控制方程中没有明显的阻尼表达式,但考虑到由于形状记忆合金线中的张力而引起的中平面拉伸,可以在非线性分析中对阻尼进行建模。结果表明,梁的自由振动幅度逐渐减小,直到达到完全弹性响应为止,而这在线性模型中是看不到的。研究梁的自由振动,并研究时间响应,相位图,导线中的应力和应变状态以及损耗因子的变化。还研究了形状记忆合金丝中的预应变对梁自由振动中最终稳定振动幅度和损耗因子的影响。

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