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Reliability analysis of laminated composite shells by response surface method based on HSDT

机译:基于HSDT的响应面法通过响应表面法的可靠性分析

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摘要

Reliability analysis of composite structures considering random variation of involved parameters is quite important as composite materials revealed large statistical variations in their mechanical properties. The reliability analysis of such structures by the first order reliability method (FORM) and Monte Carlo Simulation (MCS) based approach involves repetitive evaluations of performance function. The response surface method (RSM) based metamodeling technique has emerged as an effective solution to such problems. In the application of metamodeling for uncertainty quantification and reliability analysis of composite structures; the finite element model is usually formulated by either classical laminate theory or first order shear deformation theory. But such theories show significant error in calculating the structural responses of composite structures. The present study attempted to apply the RSM based MCS for reliability analysis of composite shell structures where the surrogate model is constructed using higher order shear deformation theory (HSDT) of composite structures considering the uncertainties in the material properties, load, ply thickness and radius of curvature of the shell structure. The sensitivity of responses of the shell is also obtained by RSM and finite element method based direct approach to elucidate the advantages of RSM for response sensitivity analysis. The reliability results obtained by the proposed RSM based MCS and FORM are compared with the accurate reliability analysis results obtained by the direct MCS by considering two numerical examples.
机译:考虑涉及参数随机变化的复合结构的可靠性分析非常重要,因为复合材料揭示了其机械性能的大统计变化。基于第一阶可靠性方法(形式)和蒙特卡罗仿真(MCS)的方法的这种结构的可靠性分析涉及性能函数的重复评估。基于响应面法(RSM)的元形化技术已成为此类问题的有效解决方案。在复合结构不确定量化和可靠性分析的应用中的应用。有限元模型通常通过经典层压理论或一阶剪切变形理论配制。但这些理论在计算复合结构的结构响应时显示出显着的误差。本研究试图应用基于RSM基于的MCS,以便使用复合结构的高阶剪切变形理论(HSDT)构造代理模型的复合壳结构的可靠性分析,考虑到材料特性,负荷,帘布层厚度和半径的不确定性壳结构的曲率。基于RSM和有限元方法的直接方法也获得了壳体的响应的灵敏度,以阐明RSM进行响应灵敏度分析的优点。通过考虑两个数值示例,将所提出的基于RSM基于RSM的MCS和形式获得的可靠性结果与直接MCS获得的准确可靠性分析结果进行比较。

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