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An analytical formulation for postbuckling and buckling vibration of micro-scale laminated composite beams considering hygrothermal effect

机译:考虑湿热效应的微型叠层复合梁屈曲和屈曲振动的解析公式

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The current paper is concerned with the micro-scale laminated composite Euler-Bernoulli beams under the hygrothermal environment. The aim is mainly focused on the static and dynamical responses of micro-scale beams under consideration in both prebuckling and postbuckling cases. Meanwhile, the mechanism how temperature and hygrothermal concentration affect the critical buckling load is discussed. The material properties are considered to be temperature- and hygroscopic concentration-dependent. And the hygrothermal deformation caused by both variations in temperature and hygroscopic concentration is taken into account. The modified couple stress Euler-Bernoulli beam model involving geometric nonlinearity due to the mid-plane stretching is adopted. Then, an analytical formulation of postbuckling and buckling vibration is derived as a function of the external compressive axial load. Exact solutions for the critical buckling load, the postbuckling configuration and the natural frequency of vibration around the buckling configuration of the beam with various boundary conditions are investigated. (C) 2017 Elsevier Ltd. All rights reserved.
机译:目前的论文涉及湿热环境下的微细层状复合欧拉-伯努利梁。目的主要集中在考虑屈曲前和屈曲后情况下的微型梁的静态和动力响应。同时,讨论了温度和湿热浓度如何影响临界屈曲载荷的机理。材料特性被认为是温度和吸湿浓度依赖性的。并且考虑了由温度和吸湿浓度的变化引起的湿热变形。采用修正的耦合应力欧拉-伯努利梁模型,该模型涉及由于中平面拉伸引起的几何非线性。然后,根据外部压缩轴向载荷得出了屈曲和屈曲振动的解析公式。研究了临界屈曲载荷,后屈曲构型以及在各种边界条件下梁的屈曲构型周围固有振动频率的精确解。 (C)2017 Elsevier Ltd.保留所有权利。

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