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Stochastic heat transfer simulation of the cure of advanced composites

机译:先进复合材料固化过程的随机传热模拟

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摘要

A stochastic cure simulation approach is developed to investigate the variability of the cure process during resin infusion related to thermal effects. Boundary condition uncertainty is quantified experimentally and appropriate stochastic processes are developed to represent the variability in tool/air temperature and surface heat transfer coefficient. The heat transfer coefficient presents a variation across different experiments of 12.3%, whilst the tool/air temperatures present a standard deviation over 1?. The boundary condition variability is combined with an existing model of cure kinetics uncertainty and the full stochastic problem is addressed by coupling a cure model with Monte Carlo and the Probabilistic Collocation Method and applied to the case of thin carbon epoxy laminates. The overall variability in cure time reaches a coefficient of variation of about 22%, which is dominated by uncertainty in surface heat transfer and tool temperature; with ambient temperature and kinetics contributing variability in the order of 1%.
机译:开发了一种随机固化模拟方法来研究与热效应相关的树脂注入过程中固化过程的可变性。通过实验对边界条件的不确定性进行了量化,并开发了适当的随机过程来表示工具/空气温度和表面传热系数的变化。传热系数在不同实验中的变化为12.3%,而工具/空气温度的标准偏差为1?。边界条件的可变性与现有的固化动力学不确定性模型相结合,并且通过将固化模型与蒙特卡洛方法和概率配置方法相结合来解决全部随机问题,并将其应用于薄碳环氧层压板。固化时间的总体变化率达到约22%的变化系数,这主要由表面传热和工具温度的不确定性决定。环境温度和动力学的变化大约在1%左右。

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