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Computational Evaluation of Effects of Fiber Shape on Transverse Properties of Polymer Composites Considering Voids under Dynamic Loading

机译:动态载荷作用下纤维形态对聚合物复合材料横向性能影响的计算评估

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摘要

Mechanical properties of composites are dependent on the constituents' properties and microstructure. To numerically reveal the effects of fiber shape on the transverse dynamic properties of polymer composites, unit cell models considering different fiber shapes are established with the finite-element method and a polymer's rate-dependent behavior is described using the modified Bodner-Partom model. There are some other micro characteristics including fiber distribution patterns and voids that have important influences on composites' transverse behaviors. Models with different regular fiber distribution patterns were analyzed to evaluate the influences of fiber distribution on the response prediction. Then, to evaluate the effects of voids, results from models with different void distribution patterns, void sizes, and void shapes were compared. It shows that among all models established, the highest transverse flow stress value comes from the square-shaped-fiber model without considering the change of fiber cross-section orientation and voids that result in significant reduction in the responses. The flow stress values of most noncircular-fiber models are higher than that of the circular-shaped-fiber model. For each kind of fiber distribution pattern, the flow stress value from the model with square-shaped fibers was the highest. The location, size, modeling method, and shape of the voids affect responses of the models with different fiber shapes to different degrees. (c) 2019 American Society of Civil Engineers.
机译:复合材料的机械性能取决于成分的性能和微观结构。为了从数值上揭示纤维形状对聚合物复合材料横向动态性能的影响,使用有限元方法建立了考虑不同纤维形状的晶胞模型,并使用改进的Bodner-Partom模型描述了聚合物的速率依赖性行为。还有其他一些微观特性,包括纤维分布模式和空隙对复合材料的横向性能有重要影响。分析具有不同规则纤维分布模式的模型,以评估纤维分布对响应预测的影响。然后,为了评估空隙的影响,比较了具有不同空隙分布模式,空隙大小和空隙形状的模型的结果。结果表明,在所有已建立的模型中,最大的横向流应力值来自方形纤维模型,而没有考虑纤维横截面方向和空隙的变化,空隙会导致响应的显着降低。大多数非圆形纤维模型的流动应力值都比圆形纤维模型的高。对于每种纤维分布模式,方形纤维模型的流动应力值最高。空隙的位置,大小,建模方法和形状会影响具有不同纤维形状的模型的响应程度。 (c)2019美国土木工程师学会。

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