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METAMODELS FOR THE OPTIMI ATION OF DAMAGE TOLERANT COMPOSITE STRUCTURES

机译:优化损伤容限复合结构的元模型

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The research here presented regards the development of an optimization technique for the design of damage-tolerant stiffened composite structures sub ected to combined axial compression and shear loading. Some techniques are already has been presented in literature regarding the optimization of composite stiffened panels 1- . The proposed methodology wants to satisfy a number of different performance requirements, such as buckling load and post-buckling stiffness for various states of damage. In particular, the design must be tolerant of predetermined degradation, due to disbonding between the skin and the stiffeners. The results from a comprehensive set of benchmark studies are summarized to establish the accuracy and validity of proposed material softening approach in order to simulate material degradation.A metamodelling method has been introduced to optimize a composite stiffened box structure for maximum reliability, while accounting for predetermined degradation. This approach is based on the combined use of probabilistic structural analysis, sampling of computer experiments and approximations of the response functions. A set of numerical experiments has been complemented through experimental tests performed at olitecnico di Milano, using dedicated test equipment -5.
机译:此处的研究涉及针对组合轴向压缩和剪力作用的抗损伤加劲复合结构设计的优化技术的发展。关于复合材料加筋板1的优化,一些技术已经在文献中提出。所提出的方法要满足许多不同的性能要求,例如对于各种损坏状态的屈曲载荷和屈曲后刚度。尤其是,由于蒙皮和加强筋之间的剥离,设计必须能够承受预定的退化。总结了来自一组全面的基准研究的结果,以建立建议的材料软化方法以模拟材料降解的准确性和有效性。 已引入一种元建模方法来优化复合加劲箱结构,以实现最大的可靠性,同时考虑到预定的退化。该方法基于概率结构分析,计算机实验采样和响应函数近似值的组合使用。通过使用专用测试设备-5在olitecnico di Milano进行的实验测试,对一组数值实验进行了补充。

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