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首页> 外文期刊>Journal of Composite Materials >A NON-ISOTHERMAL PROCESS MODEL FOR CONSOLIDATION AND VOID REDUCTION DURING IN-SITU TOW PLACEMENT OF THERMOPLASTIC COMPOSITES
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A NON-ISOTHERMAL PROCESS MODEL FOR CONSOLIDATION AND VOID REDUCTION DURING IN-SITU TOW PLACEMENT OF THERMOPLASTIC COMPOSITES

机译:热塑复合材料原位丝束放置过程中固结和减少空隙的非等温过程模型

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摘要

In in-situ composites processing, heat and pressure are applied locally to composite tows to achieve consolidation. During the consolidation of thermoplastic composite tows or plies, a modest amount of flow takes place. Due to the high viscosity of thermoplastics, the fibers and the matrix move together. We propose a novel approach to model this process-approximate the medium as a compressible viscous continuum rather than use Darcy's law which has been successful in modeling thermoset composites processing. The void content of the composite changes during the consolidation process due to various mechanisms. A consolidation model for thermoplastic composites that incorporates the relevant void growth and transport phenomena has been developed. The model is capable of predicting the final void fraction and the final thickness of a composite part as a function of the processing speed and the consolidation pressure under non-isothermal conditions. [References: 12]
机译:在原位复合材料加工中,将热量和压力局部施加到复合材料丝束上以实现固结。在热塑性复合材料丝束或帘布层的固结过程中,发生了适量的流动。由于热塑性塑料的高粘度,纤维和基体一起移动。我们提出了一种新颖的方法来对该过程进行建模-将介质近似为可压缩的粘性连续体,而不是使用已成功建模热固性复合材料加工过程的达西定律。复合材料的空隙含量在固结过程中由于各种机制而变化。已开发出一种热塑性塑料复合材料的固结模型,其中包含了相关的空隙增长和传输现象。该模型能够根据非等温条件下的加工速度和固结压力来预测复合零件的最终空隙率和最终厚度。 [参考:12]

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