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Equivalent resistance calculation of knitting sensor under strip biaxial elongation

机译:条形双轴伸长率下编织传感器的等效电阻计算

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摘要

A new theoretical model for predicting the electro-mechanical properties of knitting sensor is presented, which is focused on the relationship between the equivalent resistance and length resistance variation of loop segments under strip biaxial elongation. A resistance network based on yarn length resistance reveals how equivalent resistance to change with the increment of its numbers of course and wale. Besides, analytical equations are derived to calculate length of loop segments under relaxed state and strip biaxial elongation, respectively. It is the first time that the equivalent resistance calculating theory of knitting sensor under strip biaxial elongation has been established. By comparing the calculated results with the experiment data, it is found that fabric deformation related to the length resistance is the key factor affecting the equivalent resistance of knitting sensor. (C) 2014 The Authors. Published by Elsevier B.V.
机译:提出了一种新型的预测编织传感器机电性能的理论模型,重点研究了条带双轴伸长下线圈段的等效电阻与长度电阻变化之间的关系。基于纱线长度电阻的电阻网络揭示了等效电阻如何随其线圈横行数和纵行数的增加而变化。此外,推导了解析方程,分别计算了松弛状态和带状双轴伸长下的环段长度。首次建立了条形双轴伸长下编织传感器的等效电阻计算理论。通过将计算结果与实验数据进行比较,发现与长度电阻相关的织物变形是影响编织传感器等效电阻的关键因素。 (C)2014作者。由Elsevier B.V.发布

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