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ANALYTICAL MODELING OF NEEDLE TEMPERATURE IN AN INDUSTRIAL SEWING MACHINE

机译:工业缝纫机针温的分析模型

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摘要

In industrial sewing, needle heating is a key problem that limits a further increase of sewing speed, and hence the productivity. A high temperature of the needle affects the quality and productivity of sewing. This study deals with the analytical modeling of needle temperature in an industrial sewing machine. Based on the friction heat generated between the needle and fabric and the needle and thread, the authors show that the needle temperature is dependent on the geometry of the sewing machine's driving mechanism and on the sewing speed. In the present paper, the objective is to analyze the heat transfer mechanism in an industrial sewing machine and to develop a simpler model for predicting a maximum temperature of the needle. An experimental method of determining the needle temperature by inserted thermocouples is described. The developed analytical model is validated through comparison with experimental results. Compared with experimental results, the proposed analytical model can better predict the needle heating than the models described in the literature. In fact, the relative error between experimental and analytical results does not exceed 6%.
机译:在工业缝纫中,针加热是一个关键问题,限制了缝纫速度的进一步增加,因此提高了生产率。针的高温影响缝制的质量和生产力。本研究涉及工业缝纫机针温的分析建模。基于针和织物与针和线之间产生的摩擦热,作者表明,针温取决于缝纫机的驱动机构的几何形状和缝纫速度。在本文中,目的是分析工业缝纫机中的传热机制,并开发一种更简单的模型,用于预测针的最大温度。描述了通过插入的热电偶确定针温度的实验方法。通过与实验结果进行比较验证开发的分析模型。与实验结果相比,所提出的分析模型可以更好地预测针加热,而不是文献中描述的模型。实际上,实验和分析结果之间的相对误差不超过6%。

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