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The process and microstructure modeling of long-fiber thermoplastic composites

机译:长纤维热塑性复合材料的工艺与微观结构建模

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摘要

Interest in thermoplastic matrix composites has increased in recent years due to several advantages of these materials, including high volume process ability, recyclability, superior damage tolerance and fracture toughness, and ability to produce complex shapes. Among thermoplastic composites, long-fiber thermoplastics (LFTs) are finding increased use in the automotive and transportation sector. Predictive process and material characterization tools are much needed in industry to minimize expensive tooling/process trials and to improve the design avenues for parts produced using LFTs. The current work focuses on finite element simulation of LFT materials for two scenarios: first, process modeling of LFTs to evaluate the flow of fiber-filled viscous charge during compression molding and the resulting fiber orientation prediction and, second, modulus prediction of LFT materials accounting for fiber orientation and distribution. Together these tools provide insight into the process and performance characteristics of LFT materials.
机译:近年来,由于这些材料的几个优点,包括对大量材料的加工能力,可回收性,优异的损伤耐受性和断裂韧性以及产生复杂形状的能力,人们对热塑性基体复合材料的兴趣日益增加。在热塑性复合材料中,长纤维热塑性塑料(LFT)在汽车和交通运输领域的使用越来越广泛。工业上非常需要预测性的过程和材料表征工具,以最大程度地减少昂贵的工具/过程试验并改善使用LFT生产的零件的设计途径。当前的工作集中于两种情况下的LFT材料的有限元模拟:首先,LFT的过程建模以评估压缩成型过程中纤维填充的粘性电荷的流动,以及由此产生的纤维取向预测,其次,LFT材料的模量预测用于纤维取向和分布。这些工具一起提供了对LFT材料的过程和性能特征的洞察力。

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  • 来源
    《JOM 》 |2008年第4期| 43-49| 共7页
  • 作者单位

    Department of Materials Science ampamp Engineering University of Alabama at Birmingham 1530 3rd Avenue South Birmingham AL 35294-4461 USA;

    Department of Materials Science ampamp Engineering University of Alabama at Birmingham 1530 3rd Avenue South Birmingham AL 35294-4461 USA;

    Department of Materials Science ampamp Engineering University of Alabama at Birmingham 1530 3rd Avenue South Birmingham AL 35294-4461 USA;

    Department of Materials Science ampamp Engineering University of Alabama at Birmingham 1530 3rd Avenue South Birmingham AL 35294-4461 USA;

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