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Strength reliability analysis of aluminium-carbon fiber/epoxy composite laminates

机译:铝碳纤维/环氧复合材料层合板的强度可靠性分析

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摘要

Strength reliability of composite laminated structures relates to a series of parameters such as the design sizes, material parameters and load level. By introducing the Monte Carlo simulation and response surface method respectively, a static strength-based reliability model is proposed to predict the reliability of aluminium-carbon fiber/epoxy composite laminates for composite vessels. The burst pressure of composite vessels for different layer structures is predicted using finite element analysis. In the reliability analysis, two design parameters for composite vessels: the radius of polar axis and the winding thickness of each composite layer at the cylinder are assumed to obey the uniform distribution and Gaussian distribution respectively, and the burst pressure of composite vessels is taken as the random output response. Effects of the number of sampling and the limit strength on the strength reliability of composite vessels are explored. Besides, the numerical results obtained using two methods and two distributions for two random input parameters are compared in terms of the calculation efficiency and accuracy. Numerical results also indicate the proposed probability method exhibits preferable advantage over the conventional design method merely using empirical safety coefficient.
机译:复合材料叠层结构的强度可靠性与一系列参数有关,例如设计尺寸,材料参数和载荷水平。通过分别引入蒙特卡罗模拟和响应面方法,建立了基于静态强度的可靠性模型,以预测铝-碳纤维/环氧树脂复合材料层压板的可靠性。使用有限元分析预测了不同层结构的复合容器的破裂压力。在可靠性分析中,假设复合材料容器的两个设计参数:极轴半径和圆柱体上每个复合层的缠绕厚度分别服从均匀分布和高斯分布,并以复合材料容器的破裂压力为准。随机输出响应。探讨了取样数量和极限强度对复合材料容器强度可靠性的影响。此外,比较了两种方法和两个分布的两个随机输入参数获得的数值结果的计算效率和准确性。数值结果还表明,与仅使用经验安全系数的常规设计方法相比,该概率方法具有更好的优势。

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