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Theoretical and experimental analysis of the deformability of filament wound composite shells under axial compressive loading

机译:轴向压缩载荷作用下长丝缠绕复合材料壳变形性的理论和实验分析

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The numerical and experimental stress strain analysis of the filament wound composite shells of revolution is presented. The computations are based on the refined theory of shells that allows for the transverse shear strain. The finite difference approximation was implemented to obtain the numerical solution of the problem. Parameters of the algorithm were determined from the com- putational experimentation. To verify the numerical procedure the parallel analysis was performed using the membrane theory of shells. The results of the mechanical tests performed on the composite shells loaded by axial compression are compared with the theoretical strain distributions over the shell length. Satisfactory agreement between the experimental data and the results of cal- culations demonstrated the viability and the accuracy of the proposed approach and model.
机译:提出了绕丝旋转复合材料壳的数值和实验应力应变分析。这些计算基于精确的壳体理论,该理论考虑了横向剪切应变。执行有限差分近似以获得问题的数值解。该算法的参数是通过计算实验确定的。为了验证数值程序,使用壳膜理论进行了平行分析。将通过轴向压缩加载的复合壳的力学测试结果与壳长度上的理论应变分布进行了比较。实验数据和计算结果之间的令人满意的一致性证明了所提出的方法和模型的可行性和准确性。

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