Numerical and Experimental Investigation on Bending Behavior for High-Performance Fiber Yarns Considering Probability Distribution of Fiber Strength

Yu Wang, Xuejiao Li, Jun-bo Xie, N. Wu, Ya’nan Jiao, Peng Wang
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引用次数: 2

Abstract

The performance of fiber-reinforced composite materials is significantly influenced by the mechanical properties of the yarns. Predictive simulations of the mechanical response of yarns are, thus, necessary for fiber-reinforced composite materials. This paper developed a novel experiment equipment and approach to characterize the bending behavior of yarns, which was also analyzed by characterization parameters, bending load, bending stiffness, and realistic contact area. Inspired by the digital element approach, an improved modeling methodology with the probability distribution was employed to establish the geometry model of yarns and simulated bending behavior of yarns by defining the crimp strain of fibers in the yarn and the effective elastic modulus of yarns as random variables. The accuracy of the developed model was confirmed by the experimental approach. More bending behavior of yarns, including the twisted and plied yarns, was predicted by numerical simulation. Additionally, models revealed that twist level and number of plies affect yarn bending properties, which need to be adopted as sufficient conditions for the mechanical analysis of fiber-reinforced composite materials. This efficient experiment and modeling method is meaningful to be developed in further virtual weaving research.
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考虑纤维强度概率分布的高性能纤维纱线弯曲性能的数值与实验研究
纤维增强复合材料的性能受纱线力学性能的影响较大。因此,纱线力学响应的预测模拟对于纤维增强复合材料是必要的。本文设计了一种新型的实验设备和方法来表征纱线的弯曲性能,并从表征参数、弯曲载荷、弯曲刚度和实际接触面积等方面对纱线的弯曲性能进行了分析。受数字元方法的启发,采用改进的概率分布建模方法,以纱线中的卷曲应变和纱线的有效弹性模量为随机变量,建立纱线的几何模型,模拟纱线的弯曲行为。通过实验验证了所建立模型的准确性。通过数值模拟,对纱线的弯曲性能进行了预测,包括捻纱和捻纱。此外,模型还显示捻度和层数对纱线弯曲性能有影响,这需要作为纤维增强复合材料力学分析的充分条件。这种高效的实验和建模方法对进一步开展虚拟织造研究具有重要意义。
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