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Analysis of the Relaxation Modulus of Spun Yarns

机译:纺纱松弛模量的分析

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Abstract In this paper, the relaxation modulus of a single spun yarn is modeled in terms of the relaxation modulus of the constituent fibers of the yarn. A generalized Maxwell model is employed to describe the viscoelastic characteristic function of individual fibers subject to a given step function of tensile strain. The thermal history is considered by a temperature-related reduced time by assuming a thermo-rheologically simple material. The physical ageing process of textile fibers is considered by introducing an ageing related reduced time for glassy semi-crystalline polymer fibers. The effect of humidity is ignored. The model is extended to consider relaxation moduli of fibers undergoing different initial strain levels. With this general relaxation model of fiber, the response of the yarn to a step function of the yarn tensile strain is calculated using a force analysis method and a discrete fiber modeling approach. Experimental validation shows that the prediction agrees reasonably well with the experimental data.
机译:摘要本文以单纱的组成纤维的弛豫模量为模型,对单根纺纱的弛豫模量进行了建模。使用广义的麦克斯韦模型来描述承受给定拉伸应变阶跃函数的单根纤维的粘弹性特征函数。通过假设一种热流变简单的材料,通过减少与温度相关的时间来考虑热历史。通过为玻璃态半结晶聚合物纤维引入与老化相关的减少时间,可以考虑纺织纤维的物理老化过程。湿度的影响被忽略。扩展该模型以考虑经受不同初始应变水平的纤维的松弛模量。使用这种一般的纤维松弛模型,可以使用力分析方法和离散纤维建模方法来计算纱线对纱线拉伸应变阶跃函数的响应。实验验证表明,该预测与实验数据相当吻合。

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