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Time–temperature equivalence in the tack and dynamic stiffness of polymer prepreg and its application to automated composites manufacturing

机译:聚合物预浸料的粘性和动态刚度的时温等效性及其在自动化复合材料生产中的应用

摘要

A recently developed peel test designed to simulate the automated tape lay-up (ATL) process was used to measure tack and dynamic stiffness of newly developed ATL prepregs. Resin was extracted from the prepreg process before impregnation of the fibres. Isothermal small amplitude frequency sweeps were carried out in shear rheology to determine time–temperature superposition parameters in the form of Williams–Landel–Ferry equation. Gel permeation chromatography and differential scanning calorimetry demonstrated that the resin was not significantly changed during the prepregging process. The WLF parameters were used to transpose isothermal tack and dynamic stiffness results with excellent agreement found. This relationship offers manufacturers using composite prepreg a method to maximise and maintain tack levels at different feed rates by appropriate changes in temperature. This is of significant importance in improving the reliability of automated composite lay-up processes such as AFP and ATL, whose feed rate must vary to accommodate lay-up operations.
机译:最近开发的旨在模拟自动胶带铺放(ATL)过程的剥离测试用于测量新开发的ATL预浸料的粘性和动态刚度。在浸渍纤维之前,从预浸料工艺中提取树脂。在剪切流变学中进行了等温小振幅频率扫描,以Williams-Landel-Ferry方程的形式确定时间-温度叠加参数。凝胶渗透色谱法和差示扫描量热法表明,在预浸过程中树脂没有显着变化。 WLF参数用于换热等温粘性和动态刚度结果,发现具有很好的一致性。这种关系为使用复合预浸料的制造商提供了一种方法,可以通过适当的温度变化来最大化并保持不同进料速率下的粘性水平。这对于提高自动复合铺层工艺(例如AFP和ATL)的可靠性至关重要,因为它们必须改变进料速度才能适应铺层操作。

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