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Graded Glass Mat-Reinforced Polypropylene

机译:梯度玻璃毡增强聚丙烯

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In the impregnation process,when pressure is applied,the dry fiber preform is first compressed and then unloads as the matrix flows within the pores.It has been shown earlier that for glass mat-reinforced thermoplastic (GMT) materials,the time to provide complete infiltration of the matrix is significantly shorter than the unloading time of the reinforcement This effect is exploited here to control the processing time in order to provide full infiltration but limited relaxation of the fiber bed,thereby producing a graded fiber content structure.Symmetric glass fiber/polypropylene (PP) composites were impregnated for different processing times to produce parts with a higher fiber content on the surface,decreasing towards the center.The elastic modulus in bending of the GMT parts was measured by a three-point flexure test while the distribution of fibers in the matrix was quantified using optical microscopy combined with image analysis.The flexural modulus of GMT was found to decrease with the impregnation time,in good agreement with the prediction from infiltration and mechanics theory.Controlled processing could therefore be used to maximize the bending stiffness of GMT.
机译:在浸渍过程中,施加压力时,干纤维预成型坯首先被压缩,然后随着基质在孔中流动而卸荷。之前已经证明,对于玻璃毡增强热塑性塑料(GMT),提供完整的时间是必要的。基质的浸渗时间明显短于增强材料的卸荷时间。此处利用这种效果来控制加工时间,以提供充分的浸渗但限制了纤维床的松弛,从而产生渐变的纤维含量结构。聚丙烯(PP)复合材料在不同的处理时间下浸渍,以生产出表面纤维含量更高,向中心递减的零件。通过三点弯曲试验测量GMT零件弯曲时的弹性模量,同时测定其分布。使用光学显微镜结合图像分析对基质中的纤维进行定量。发现GMT的弯曲模量降低了浸渍时间,与渗透和力学理论的预测吻合良好。因此,可以采用控制加工来使GMT的弯曲刚度最大化。

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