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首页> 外文期刊>Advanced Composite Materials: The Official Journal of the Japan Society of Composite Materials >Thermal deformation constraint using response surfaces for optimization of stacking sequences of composite laminates
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Thermal deformation constraint using response surfaces for optimization of stacking sequences of composite laminates

机译:使用响应面进行热变形约束,以优化复合层压板的堆叠顺序

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摘要

Carbon fiber reinforced plastic (CFRP) laminates are used extensively in aerospace structures. The laminated CFRP composite structures require optimal design of the stacking sequences. Modifications to the stacking sequences change the thermal deformation that results from the CFRP laminate curing process. Even if a stacking sequence provides maximum buckling load, the laminate is unacceptable if it displays large deformations after the curing process. Therefore, this study deals with the constraint of thermal deformation after the curing process. Maximization of the buckling load was targeted as the objective function here. Three types of response surfaces were proposed to estimate the thermal deformation and their fit was investigated. The mode classification method was found to be excellent. Using the mode classification response surface, a stacking sequence optimization to maximize the buckling stress was performed. The new mode classification method was shown to be appropriate for optimization of the curing process constraints.
机译:碳纤维增强塑料(CFRP)层压板广泛用于航空航天结构。层压CFRP复合结构需要优化堆叠顺序设计。修改堆叠顺序会更改由CFRP层压板固化过程导致的热变形。即使堆叠顺序提供最大的屈曲载荷,如果层压板在固化过程后显示出较大的变形,则也是不可接受的。因此,本研究解决了固化过程后的热变形约束。在此,将屈曲载荷的最大化作为目标函数。提出了三种类型的响应面来估计热变形,并研究了它们的拟合度。发现模式分类方法非常好。使用模式分类响应面,执行了堆叠序列优化以使屈曲应力最大化。结果表明,新的模式分类方法适用于优化固化过程的约束条件。

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