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THERMO-MECHANICAL INSTABILITIES IN BILAMINATE SHELL STRUCTURES

机译:层状壳结构中的热机械不稳定性

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摘要

The problem of an elastic bilaminate shell subjected to transverse pressure and a uniform temperature field is considered for plane strain/plane stress configurations. Closed form analytical solutions are obtained for the nonlinear problem, and a stability criterion is derived for situations where multiple equilibrium configurations of the structure are possible for a given value of the loading parameter (a combination of the normalized pressure and thermal moment). Critical behavior is seen to be dependent on two critical parameters, a critical value of the loading parameter and a critical value of the membrane force. Extensive numerical simulations based on these solutions reveal characteristic behavior of the system. This behavior includes, bifurcation buckling, asymptotic buckling, sling-shot buckling and pre-limit point snap-through buckling. It is seen that pre-limit point snap-through is pervasive and perhaps the norm, even for certain classic problems, and its degree is a function of the material properties of the structure.
机译:对于平面应变/平面应力配置,考虑了弹性双层压壳承受横向压力和均匀温度场的问题。针对非线性问题获得了封闭形式的解析解,并针对对于给定的载荷参数值(归一化压力和热矩的组合)可能存在结构的多个平衡构型的情况,得出了稳定性准则。临界行为被视为取决于两个临界参数,即加载参数的临界值和膜力的临界值。基于这些解决方案的大量数值模拟揭示了系统的特征行为。此行为包括分叉屈曲,渐近屈曲,悬索抛丸屈曲和极限点快速贴合屈曲。可以看出,即使对于某些经典问题,限制点的快速捕捉也是普遍的,并且可能是规范,其程度是结构的材料属性的函数。

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