Modeling and optimization of two-stage composite cure with the use open-mold tooling

J. Wu, S. Shevtsov, Shun-Hsyung Chang
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引用次数: 1

Abstract

The paper presents an optimal control synthesis for curing shell-like composite structures using open dies in an autoclave. The control synthesis is a multi-objective optimization problem where minimization objectives are deviations of temperature and degree of cure within a cured part, considering constraints imposed by thermo-kinetic properties of prepreg and manufacturing requirements. The control should eliminate the formation of early hard skin, resin-rich or resin-dry areas, insufficient consolidation, and uneven cure. Such a purpose can be achieved through uniform distribution of temperature and degree of cure within the cured structure. The optimization procedure, including the formulation of the cure problem and the finite element implementation where correct timing of heating-up and maintaining isothermal, is illustrated by an example of the shell-like composite structure manufactured by means of two-stage curing in an autoclave. The technique developed allows estimating the best achievable quality indicators of composite parts, finding key parameters of the control law, and considering all imposed constraints for decision-making.
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开模两段复合材料固化的建模与优化
本文提出了一种在高压灭菌器中使用开模固化壳状复合材料结构的最优控制合成方法。控制综合是一个多目标优化问题,在考虑预浸料的热动力学性质和制造要求的约束下,最小化目标是固化部件内温度和固化程度的偏差。控制应消除早期硬皮形成,树脂丰富或树脂干燥区域,不充分固化和不均匀固化。这种目的可以通过在固化结构内均匀分布温度和固化程度来实现。优化过程包括固化问题的制定和有限元的实现,其中加热和保持等温的正确时间,并以在高压灭菌器中两段固化制造的壳状复合材料结构为例进行了说明。所开发的技术可以估计复合零件的最佳可实现质量指标,找到控制律的关键参数,并考虑所有施加的约束进行决策。
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