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Delamination buckling and postbuckling in composite cylindrical shells under combined axial compression and external pressure

机译:复合圆柱壳在轴向压缩和外压作用下的分层屈曲和后屈曲

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A series of finite element analyses on the delaminated composite cylindrical shells subject to combined axial compression and pressure are carried out varying the delamination thickness and length, material properties and stacking sequence. Based on the FE results, the characteristics of the buckling and postbuckling behaviour of delaminated composite cylindrical shells are investigated. The combined double-layer and single-layer of shell elements are employed which in comparison with the three-dimensional finite elements requires less computing time and space for the same level of accuracy. The effect of contact in the buckling mode has been considered, by employing contact elements between the delaminated layers. The interactive buckling curves and postbuckling response of delaminated cylindrical shells have been obtained. In the analysis of post-buckled delaminations, a study using the virtual crack closure technique has been performed to find the distribution of the local strain energy release rate along the delamination front. The results are compared with the previous results obtained by the author on the buckling and postbuckling of delaminated composite cylindrical shells under the axial compression and external pressure, applied individually.
机译:通过改变分层厚度和长度,材料特性和堆叠顺序,对分层组合圆柱壳在承受轴向压缩和压力作用下进行了一系列有限元分析。基于有限元分析结果,研究了分层复合圆柱壳的屈曲和后屈曲特性。采用了组合的双层和单层壳单元,与三维有限元相比,对于相同的精度水平,它需要更少的计算时间和空间。通过在分层层之间采用接触元件,已经考虑了在弯曲模式下的接触效果。获得了层状圆柱壳的相互作用屈曲曲线和屈曲后响应。在屈曲后的分层分析中,已经进行了使用虚拟裂纹闭合技术的研究,以发现沿分层前沿的局部应变能释放速率的分布。将结果与作者先前获得的关于分层复合圆柱壳在轴向压缩和外部压力下分别施加的屈曲和后屈曲的先前结果进行比较。

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