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Characterization methodology of thermoset resins for the processing of composite materials -Case study

机译:用于复合材料加工的热固性树脂的表征方法-案例研究

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摘要

The resin characterization is a key element in the manufacturing of composite materials. Resin processing properties and their associated constitutive models are essential in order to define and optimize the processing parameters and predict the final properties of a composite structure. In this article, a comprehensive methodology is presented to characterize the main processing properties of a thermoset resin system. As a case study, the thermal, chemorheological, and thermomechanical properties of the CYCOM 890RTM epoxy resin were investigated. A cure kinetics model taking into account the diffusion was found to accurately predict resin cure kinetics behavior within the processing condition range. The developed resin rheological model accurately predicted the onset of resin gelation and the evolution of resin viscosity with temperature and degree-of-cure. The glass transition temperature and instantaneous elastic modulus were determined using also a rheometer in a solid torsion mode. Finally, volumetric changes, resin chemical shrinkage and coefficient of thermal expansion were investigated taking into account the chemical and thermal effects. In general, the detailed procedure and techniques presented in this work can be applied to the intensive characterization of a wide range of thermoset resin systems.
机译:树脂特性是制造复合材料的关键要素。树脂加工性能及其相关的本构模型对于定义和优化加工参数以及预测复合结构的最终性能至关重要。在本文中,提出了一种全面的方法来表征热固性树脂体系的主要加工性能。作为案例研究,对CYCOM 890RTM环氧树脂的热,化学流变和热机械性能进行了研究。发现考虑了扩散的固化动力学模型可以准确预测加工条件范围内的树脂固化动力学行为。建立的树脂流变模型可准确预测树脂凝胶化的开始以及树脂粘度随温度和固化程度的变化。还使用固体扭转模式下的流变仪测定玻璃化转变温度和瞬时弹性模量。最后,考虑到化学和热效应,研究了体积变化,树脂化学收缩和热膨胀系数。通常,这项工作中介绍的详细步骤和技术可用于广泛表征各种热固性树脂体系。

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