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Analytical approach of creep behavior of carpet yarn

机译:地毯纱蠕变行为的解析方法

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摘要

Based on mechanical models, the creep behavior of carpet yarns after dynamic loading was investigated. For prediction the creep elongation, the frequently used mechanical models reported in the literature were analyzed. The mechanical models which were used in this article were: standard linear model, four-element model, two-component Kelvin's model, and Eyring's model. The obtained creep formulas were fitted to experimental creep data, and the parameters of the model can be obtained using the Marquardt algorithm for nonlinear regression. When comparing the experimental creep curve with the fitted curve from the mechanical model, it is clear that the four-element model explain the experimental creep curve better. During tufting machine stops, the carpet yarns were undergone constant load. The confirmed viscoelastic model will be used to calculate total creep elongation during carpet machine stoppage. Thus, the start-up marks which occurred at carpet machine restarts can be exactly eliminated by adjusting the feeding length according to the creep elongation.
机译:基于力学模型,研究了地毯地毯纱线在动态载荷作用下的蠕变行为。为了预测蠕变伸长率,分析了文献中报道的常用力学模型。本文使用的力学模型为:标准线性模型,四元素模型,两组分开尔文模型和艾林模型。将获得的蠕变公式拟合到实验蠕变数据,并且可以使用Marquardt算法进行非线性回归来获得模型的参数。当将实验蠕变曲线与力学模型中的拟合曲线进行比较时,很明显,四元素模型可以更好地解释实验蠕变曲线。在簇绒机停止期间,地毯纱线承受恒定载荷。确认的粘弹性模型将用于计算地毯机停机期间的总蠕变伸长率。因此,通过根据蠕变伸长率调节进给长度,可以准确地消除地毯机重新启动时出现的启动痕迹。

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