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Investigation of fast curing epoxy resins regarding process induced distortions of fibre reinforced composites

机译:快速固化环氧树脂对纤维增强复合材料加工引起的变形的研究

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Unavoidable deformations occur during part production due to the non-isotropic nature of carbon fibre reinforced plastics (CFRP). These deformations often lead to dissatisfaction of tolerances or result in cost and time intensive rework of the tooling. In a cost driven production environment, similar to the automotive industry, it is essential to predict the deformations early on in the part development process in order to compensate toolings accordingly. In future applications, Fast Curing Epoxy Resins (FCER), with curing times of less than 20 min, will play a key role in high rate CFRP-production at low cost.The present paper reports on a comprehensive experimental study on different FCER systems. It includes the thermo-chemical characterization of neat resin samples as well as the quantification of spring-in deformations of L-profiles. Essential part and processing parameters, as the lay-up, the curing temperature, the cooling rate and the fibre volume fraction are varied and their effect on process induced deformations is quantified. Results for FCER system are compared to slower curing systems to assess differences.
机译:由于碳纤维增强塑料(CFRP)的非各向同性特性,在零件生产过程中会发生不可避免的变形。这些变形通常导致公差的不满意或导致工具的成本和时间密集的返工。在类似于汽车行业的成本驱动型生产环境中,必须在零件开发过程中及早预测变形,以便相应地补偿模具。在未来的应用中,固化时间少于20分钟的快速固化环氧树脂(FCER)将在低成本,高成本CFRP生产中发挥关键作用。本文报道了对不同FCER系统的综合实验研究。它包括纯树脂样品的热化学表征以及L型材的弹性变形的量化。基本部分和加工参数(如铺层,固化温度,冷却速率和纤维体积分数)均发生变化,并量化了它们对加工引起的变形的影响。将FCER系统的结果与较慢的固化系统进行比较,以评估差异。

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