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Implementation of Strength-Based Failure Criteria in the Lamination Parameter Design Space

机译:层压参数设计空间中基于强度的破坏准则的实现

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摘要

Lamination parameters have proven to be exceedingly useful for the efficient design optimization of composite structures due to their continuous nature and flexibility in the final choice of stacking sequence with a reduced number of design variables. So far, failure criteria could only be incorporated into the lamination parameter design space for a predefined combination of fiber angles. This drastically limits the design space available to the designer. This paper investigates incorporating the Tsai-Wu failure criterion into the lamination parameter design space in the most general setting. A conservative failure envelope is derived that guarantees a failure-free region of the lamination parameter space regardless of the fiber orientations in the laminate stacking sequence. The proposed approach allows strength criteria to be included both as a constraint as well as an objective function during the optimization process. The derived strength envelope is then used to compare strength- and stiffness-based designs. The results clearly indicate that the degree of correlation between stiffness- and strength-driven designs depends on the properties of the material under consideration.
机译:事实证明,层压参数对于复合结构的有效设计优化极其有用,因为它们的连续性和最终选择堆叠顺序的灵活性以及减少设计变量的数量。到目前为止,对于纤维角度的预定义组合,只能将失效标准纳入层压参数设计空间中。这极大地限制了设计者可用的设计空间。本文研究在最一般的情况下将Tsai-Wu破坏准则纳入层压参数设计空间。导出了一个保守的失效包络线,该包络线确保了层压参数空间的无故障区域,而与层压板堆叠顺序中的纤维方向无关。所提出的方法允许在优化过程中将强度标准既包括约束也包括目标函数。然后,将得出的强度包络用于比较基于强度和刚度的设计。结果清楚地表明,刚度和强度驱动设计之间的相关程度取决于所考虑材料的性能。

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