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DECONSOLIDATION IN COMPOSITE PROCESSING:COMPARISON OF TWO GLASS FIBER-POLYPROPYLENESYSTEMS

机译:复合处理中的去粘结剂:两种玻璃纤维聚丙烯系统的比较

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In thermoplastic based composite processing, a molten matrix impregnates a dry fiber preformproducing preconsolidated blanks. These composites parts are afterwards subjected to post-processing,which consists in reheating followed by stamping or flow molding. During reheating, the materialgenerally lofts, and its void content increases. In this paper, the phenomena leading to deconsolidationare thus investigated, with particular emphasis on the elastic release of stress in the preform, alsocalled spring-back effect. A model is proposed to simulate the kinetics of the phenomenon and theevolution of the specimen thickness. A comparison with model experiments is also provided. Finally,a comparison of two different initial material structures of glass mat and polypropylene is proposed.Deconsolidation experiments of a classical type of GMT and a new type of commingled system arecarried out. It is shown that for both systems the void increase due to deconsolidation exceeds 50%. Itcan be then concluded that if the fiber volume fraction is identical and homogenous in the structure,the void increase due to deconsolidation is the same. Furthermore, the model experiments ofspringback have shown that void formation plays a major role in deconsolidation and is induced by thelofting of the fiber preform: when the fiber preform tends to recover its initial relaxed thickness,tensile forces are induced in the molten matrix which lead to void growth.
机译:在热塑性塑料复合处理中,熔融基质浸渍了一种预制件的干纤维前焊的坯料。这些复合材料之后零件经过后处理,其包括再加热,然后是冲压或流动成型。在再加热期间,物质置位倾斜和空隙含量增加。在本文中,引起了脱屑的现象,如此研究,特别强调了预制件中应力的弹性释放,即持续的弹簧效应。提出了一种模型来模拟现象的动力学和样品厚度的动力学。还提供了与模型实验的比较。最后,提出了两种不同初始材料结构的玻璃垫和聚丙烯的比较。典型GMT的经典类型的分子实验和新型的混合系统。结果表明,对于两种系统,由于去焊剂导致的空隙率超过50%。然后,ITCAN得出结论,如果在结构中纤维体积分数相同并且均匀,则由于去粘连引起的空隙增加是相同的。此外,已经推断的模型实验表明,空隙形成在脱焊剂中起主要作用,并且通过纤维预制件的致胶诱导:当纤维预制件倾向于回收其初始弛豫厚度时,在熔融基质中诱导拉伸力,导致熔融基质无效增长。

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