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An Efficient Thermal Cure Profile for Thick Parts Made by Reactive Processing of Acrylic Thermoplastic Composites

机译:一种有效的热固化型材,用于丙烯酸热塑性复合材料的反应加工制造的厚部件

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摘要

The process of curing of large thick composite parts needs attention regarding the formation of residual stresses. Similarly, novel reactive thermoplastics need investigating to produce an efficient thermal cure profile that decreases the risk of warpage and residual stress. In this work, the polymerization kinetics of the Elium resin system is investigated by differential scanning calorimetry (DSC) tests, the analysis of thermo-grams, and the parameters of Kamal and Sourour’s semi-empirical model. A numerical model based on finite elements was set up to reproduce the temperature fields during part consolidation. Several processing conditions were investigated (dwell temperature, environment, heat exchange) in order to predict the thermal gradient within the part. The optimal cure profile was identified as a function of process parameters with the aim of minimizing the thermal gradient within the composite element. The analysis revealed that, for the reactive thermoplastic Elium, the consolidation in facilities with high thermal exchange may increase the risk of residual stresses within the parts, erasing the advantage of short cure cycles.
机译:大型厚复合部件的固化过程需要注意的形成残余应力。类似地,新的反应性热塑性塑料需要研究以产生有效的热固化曲线,这降低了翘曲和残余应力的风险。在这项工作中,通过差示扫描量热法(DSC)试验,热克分析以及Kamal和Sourour的半实证模型的参数研究了elium树脂系统的聚合动力学。建立基于有限元的数值模型以在部分整合期间再现温度场。研究了几种加工条件(停留温度,环境,热交换),以预测部分内的热梯度。最佳固化曲线被识别为过程参数的函数,目的是最小化复合元件内的热梯度。该分析显示,对于具有高热交换的设施中的固结可以增加零件内残留应力的整合,擦除了短固化循环的优点。

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