Tensile theoretical modeling and auxetic behavior analyzing of negative Poisson’s ratio yarn

Junli Chen, Xiaojing Wen, Xiang Liu, Z. Du
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Abstract

In this paper, the tensile models of the negative Poisson’s ratio yarn with incompressible component yarn and compressible component yarn are constructed. The theoretical Poisson’s ratio curves exhibit the same trend as the experiment. Compared with the theoretical model of incompressible component yarns, a 14% reduction was found in the maximum negative Poisson’s ratio value in the compressible component yarns model. Additionally, the modified theoretical model was established to improve further the accuracy of the model. Both the variation trend and Poisson’s ratio value of the theoretical curves are highly consistent with the experimental results, and the average difference rate of the maximum Poisson’s ratio value is below 10%, which proves the effectiveness of the corrected theoretical model in predicting the auxetic behavior. Our theoretical model not only considers the initial helical path of the wrap yarn could not be completely horizontally straightened when it is just subject to an axial tensile force but also takes the influence of component yarn sectional shape changes into account. The as-constructed theoretical model is more realistic and can guide the design of negative Poisson’s ratio yarn and optimize the theoretical modeling method.
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负泊松比纱线的拉伸理论建模和辅助行为分析
本文构建了负泊松比纱线的拉伸模型,包括不可压缩成分纱线和可压缩成分纱线。理论泊松比曲线呈现出与实验相同的趋势。与不可压缩组分纱线的理论模型相比,可压缩组分纱线模型的最大负泊松比值降低了 14%。此外,还建立了修正的理论模型,以进一步提高模型的准确性。理论曲线的变化趋势和泊松比值都与实验结果高度一致,最大泊松比值的平均差异率低于 10%,这证明了修正后的理论模型在预测辅助行为方面的有效性。我们的理论模型不仅考虑了包覆纱在刚受到轴向拉伸力时的初始螺旋路径不可能完全水平伸直,还考虑了组分纱截面形状变化的影响。构建的理论模型更符合实际情况,可以指导负泊松比纱线的设计,优化理论建模方法。
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