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Failure Assessment and Reliability Analysis of CFRP Composite Pressure Vessel

机译:CFRP复合压力容器的失效评估和可靠性分析

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摘要

A new approach for progressive failure and reliability analysis of carbon fiber reinforced polymeric (CFRP) composite pressure vessel with many base random variables is developed in the paper. The elastic constants of CFRP lamina and geometric parameters of the vessel are selected as the base design variables. CFRP lamina specimen and pressure vessel were manufactured and tested in order to obtain statistics of design variables. The limit state function for progressive failure analysis was set up. Then the progressive failure and reliability analysis of the vessel were performed according to the stiffness degradation model based on Monte Carlo simulation procedure using MATLAB. The distributions of failure loads and the probability of failure of the vessel were obtained. The feasibility and accuracy of the proposed method is validated by good agreement between the simulation and experimental results. Further analysis indicates that the lamina tensile strength in the fiber direction and hoop layer thickness of the vessel have significant influence on the probability of failure of composite pressure vessel.
机译:本文提出了一种具有许多基本随机变量的碳纤维增强聚合物(CFRP)复合压力容器渐进破坏和可靠性分析的新方法。选择CFRP叶片的弹性常数和容器的几何参数作为基本设计变量。为了获得设计变量的统计数据,制造并测试了CFRP薄片样品和压力容器。建立了渐进式故障分析的极限状态函数。然后,基于刚度退化模型,基于MATLAB的蒙特卡罗模拟程序,对船舶进行了渐进式失效和可靠性分析。获得了失效载荷的分布和船舶失效的概率。仿真结果与实验结果吻合良好,验证了所提方法的可行性和准确性。进一步的分析表明,在纤维方向上的层拉伸强度和容器的环向层厚度对复合压力容器的失效概率有重大影响。

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