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首页> 外文期刊>Journal of Composite Materials >Fiber length and orientation in long-fiber injection-molded thermoplastics - Part I: Modeling of microstructure and elastic properties
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Fiber length and orientation in long-fiber injection-molded thermoplastics - Part I: Modeling of microstructure and elastic properties

机译:长纤维注射成型热塑性塑料中的纤维长度和取向-第一部分:微观结构和弹性性能建模

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This article develops a methodology to predict the elastic properties of long-fiber injection-molded thermoplastics (LFTs). The corrected experimental fiber length distribution and the predicted and experimental orientation distributions were used in modeling to compute the elastic properties of the composite. First, from the fiber length distribution (FLD) data in terms of number of fibers versus fiber length, the probability density functions were built and used in the computation. The two-parameter Weibull's distribution was also used to represent the actual FLD. Next, the Mori-Tanaka model that employs the Eshelby's equivalent inclusion method was applied to calculate the stiffness matrix of the aligned fiber composite containing the established FLD. The stiffness of the actual as-formed composite was then determined from the stiffness of the computed aligned fiber composite that was averaged over all possible orientations using the orientation averaging method. The methodology to predict the elastic properties of LFTs was validated via experimental verification of the longitudinal and transverse moduli determined for long glass fiber injection-molded polypropylene specimens. Finally, a sensitivity analysis was conducted to determine the effect of a variation of FLD on the composite elastic properties. Our analysis shows that it is essential to obtain an accurate fiber orientation distribution and a realistic fiber length distribution to accurately predict the composite properties.
机译:本文开发了一种预测长纤维注塑热塑性塑料(LFTs)弹性性能的方法。在模型中使用校正后的实验纤维长度分布以及预测的和实验的取向分布来计算复合材料的弹性。首先,根据纤维数量与纤维长度的关系,从纤维长度分布(FLD)数据中建立了概率密度函数,并将其用于计算。两参数威布尔分布还用于表示实际的FLD。接下来,应用采用Eshelby等效夹杂法的Mori-Tanaka模型来计算包含已建立FLD的取向纤维复合材料的刚度矩阵。然后从计算出的取向纤维复合材料的刚度确定实际成型复合材料的刚度,该刚度是使用取向平均方法在所有可能的取向上求平均的。通过对长玻璃纤维注射成型聚丙烯样品确定的纵向和横向模量的实验验证,验证了预测LFT弹性特性的方法。最后,进行敏感性分析,以确定FLD变化对复合材料弹性性能的影响。我们的分析表明,获得准确的纤维取向分布和实际的纤维长度分布对准确预测复合材料性能至关重要。

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