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Buckling and post-buckling responses of smart doubly curved composite shallow shells embedded in SMA fiber under hygro-thermal loading

机译:湿热作用下SMA纤维中智能双曲复合浅壳的屈曲和屈曲后响应

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摘要

In this research, the post-buckling behaviors of doubly curved composite shells in hygro-thermal environment are investigated by employing multiple scales perturbation method. Three-phase composites shells with polymer/Carbon nanotube/fiber and polymer/Graphene platelet/fiber (PGF) and Shape Memory Alloy (SMA)/matrix according to Halpin-Tsai model are taken into consideration. The displacement-strain of laminated doubly curved shells via third-order shear deformation theory (TSDT) and using von-Korman nonlinear shell theory is obtained. The governing equations of shallow shell are derived by implementing Hamilton's principle. For investigating correctness and accuracy, this paper is validated with other previous researches. Finally, different parameters such as volume fraction of SMA, temperature rise, various distribution patterns, aspect and curvature ratios are considered in this article. It is found that these parameters have significant effect on the thermal buckling loading.
机译:在这项研究中,采用多尺度摄动法研究了双曲复合壳在湿热环境下的屈曲后行为。考虑了根据Halpin-Tsai模型的具有聚合物/碳纳米管/纤维和聚合物/石墨烯血小板/纤维(PGF)和形状记忆合金(SMA)/矩阵的三相复合材料壳。利用三阶剪切变形理论(TSDT),并利用von-Korman非线性壳理论,获得了叠层双曲壳的位移-应变。通过实现汉密尔顿原理,推导了浅壳控制方程。为了研究正确性和准确性,本文与其他先前的研究进行了验证。最后,本文考虑了不同的参数,例如SMA的体积分数,温度上升,各种分布模式,纵横比和曲率比。发现这些参数对热屈曲载荷有显着影响。

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