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An experimental device and an inverse method to determine the thermal conductivity of a fiber reinforced composite as a function of temperature and state of cure

机译:确定温度和固化状态的函数的纤维增强复合材料导热系数的实验装置和逆方法

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The thermal conductivity of a thermosetting composite varies significantly during the injection and curing. These variations play an important role on the heat transfer within a thick part and thus on resin kinetics. In fact, it was observed experimentally that the temperature gradient through the thickness of a composite has a strong influence on the quality of surface finish. In order to perform precise non isothermal mould filling and curing simulations, a good knowledge of thermal conductivity is needed in function of temperature and state of cure. This work is concerned with the measurement of heat conductivity through the thickness of a composite part. For this purpose, an inverse method is developed together with an experimental device designed to measure the transverse thermal conductivity. The heat capacity of the material, which is needed to derive by inverse analysis the thermal conductivity, is obtained following a classical method based on DSC measurements. The data processing procedure based on inverse analysis will first be described. Then the approach will be validated for a set of experimental results obtained for a polyester resin formulation.
机译:热固性复合材料的导热系数在注入和固化过程中会发生显着变化。这些变化对厚部分内的热传递并因此对树脂动力学起重要作用。实际上,通过实验观察到,贯穿复合材料厚度的温度梯度对表面光洁度的质量有很大的影响。为了执行精确的非等温模具填充和固化模拟,需要具有一定的温度和固化状态函数的导热系数方面的知识。这项工作涉及通过复合零件的厚度进行热导率的测量。为此,开发了一种逆方法以及设计用于测量横向热导率的实验装置。通过基于DSC测量的经典方法,可以通过反分析得出导热率所需的材料热容量。首先将描述基于逆分析的数据处理过程。然后,该方法将针对聚酯树脂配方获得的一组实验结果进行验证。

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