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Efficient Spatial and Temporal Modelling of Material Temperatures Within Self-Reinforced Polypropylene Sheets During IR Radiation

机译:IR辐射期间自增强聚丙烯片内材料温度的高效空间和时间建模

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Polymer composites of self-reinforced fibres and a matrix composed of the same plastic material display an outstanding mechanical performance and an excellent recyclability. Hence, these materials are suitable for many practical applications. One disadvantage, however, is the narrow processing window that is caused by a strong pressure and temperature sensitivity of the self-reinforced fibres. In this paper, an approach to efficiently model the spatial and temporal temperature evolution is presented. Advanced empirical modelling techniques from the design and analysis of computer experiments are fitted to experimental data. It is shown that only a small set of experiments has to be performed in order to predict the temperatures with the desired accuracy. The required enhancements with respect to the design of experiments and the empirical models are presented.
机译:自增强纤维的聚合物复合材料和由相同塑料材料组成的基质,显示出突出的机械性能和优异的再循环性。因此,这些材料适用于许多实际应用。然而,一个缺点是由自增强纤维的强大的压力和温度敏感性引起的窄处理窗口。本文提出了一种有效地模拟空间和时间温度演化的方法。计算机实验设计和分析的先进经验建模技术适用于实验数据。结果表明,只有一小组实验必须进行,以便预测具有所需精度的温度。提出了关于实验设计的所需增强和经验模型。

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