Planar interdigital sensors based looseness estimation of leather

V. Kasturi, S. Mukhopadhyay
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引用次数: 5

Abstract

An interdigital based sensing system to measure looseness in the sheepskin to alter the tanning process to produce better quality leather has been fabricated and developed. The sensor has the planar interdigital structure and the consecutive fingers are connected to positive and negative electrodes respectively. The proximity depth of electric field can be adjusted by varying the distance between two electrodes of opposite polarity. Electric field lines pass through the leather (skin) under test, and the reactive impedance of the sensor depends on the material dielectric properties as well as on the electrode and material geometry, is measured. From the measurement the effective permittivity of the sensor is calculated which is related to the quality of leather. It is possible to predict some information of skin quality during various stages of leather processing, which will be very useful for optimizing the process of leather manufacture to achieve the desired qualities in the finished product.
基于平面数字间传感器的皮革松动估计
研制并开发了一种基于数字的传感系统,用于测量羊皮的松弛度,从而改变鞣制工艺,生产出质量更好的皮革。传感器具有平面指间结构,连续手指分别连接到正极和负极。电场的接近深度可以通过改变极性相反的两个电极之间的距离来调节。电场线穿过被测皮革(皮肤),传感器的无功阻抗取决于材料的介电特性以及电极和材料的几何形状。根据测量结果,计算出传感器的有效介电常数,它与皮革的质量有关。在皮革加工的各个阶段,对皮革质量的一些信息进行预测是可能的,这对于优化皮革生产工艺,使成品达到预期的质量是非常有用的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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