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A theoretical model with experimental verification for bending stiffness of thermosetting prepreg during forming process

机译:具有实验验证的热固性预浸料成型过程中弯曲刚度的理论模型

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Capturing the out-of-plane properties using a suitable experimental method and combination of constitutive models and modelling techniques is required to improve forming simulation outcomes for composite prepregs, with the ultimate aim of predicting and optimizing forming processes. This paper proposes a theoretical model for bending behavior of woven fabric-based out-of-autoclave prepregs under conditions relevant to forming process. Time and temperature dependencies are considered by means of time temperature superposition in a linear viscoelastic material model. A new approach for considering the testing rate and temperature with respect to a reference value is also established. Experimental tests are carried out for estimation of the model parameters and validation of the proposed model. A special bending test setup is utilized to allow for adequate control of testing rates and temperatures as well as viscoelastic investigations. A good agreement between the predicted bending stiffness and the experimental values was observed. The model and experimental results reveal that the processing temperature has the strongest influence on the bending property results. (C) 2017 Elsevier Ltd. All rights reserved.
机译:需要使用合适的实验方法以及本构模型和建模技术的组合来捕获平面外特性,以改善复合材料的预浸料的成型模拟结果,最终目的是预测和优化成型过程。本文提出了一种在与成型工艺有关的条件下,机织物基超高压预浸料弯曲性能的理论模型。在线性粘弹性材料模型中,通过时间温度叠加来考虑时间和温度依赖性。还建立了一种考虑参考值的测试速率和温度的新方法。进行实验测试以估计模型参数并验证所提出模型的有效性。利用特殊的弯曲测试装置,可以充分控制测试速率和温度以及粘弹性研究。在预测的弯曲刚度和实验值之间观察到良好的一致性。模型和实验结果表明,加工温度对弯曲性能的影响最大。 (C)2017 Elsevier Ltd.保留所有权利。

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