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Prediction of the mechanical properties of long fiber reinforced thermoplastics

机译:长纤维增强热塑性塑料机械性能预测

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Short fiber reinforced thermoplastics are used extensively due to their high mechanical properties and low processing costs. Long fiber reinforced thermoplastics (LFT) show an even more interesting property profile and are used more and more often for structural parts. However, processing is not that simple and their anisotropic properties resulting from the fiber microstructure pose a challenge in terms of engineering design process. To reliably predict the structural mechanical properties of LFT, it is necessary to investigate a method that allows comprehensive consideration of the existing fiber microstructure within the engineering design process. For this purpose, a micromechanical approach developed at IKT has been extended to include the necessary process variables and the associated models.
机译:由于其高机械性能和低处理成本,短纤维增强热塑性塑料广泛使用。 长纤维增强热塑性塑料(LFT)显示出更有趣的性质概况,并且越来越多地用于结构部件。 然而,加工并不简单,并且由于纤维微观结构而导致的各向异性特性在工程设计过程中构成挑战。 为了可靠地预测LFT的结构性机械性能,有必要研究一种允许在工程设计过程中全面考虑现有纤维微观结构的方法。 为此目的,在IKT开发的微机械方法已扩展到包括必要的过程变量和相关模型。

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