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Development of Compatible Induction coil with Pure AC for Hall Effect Sensor: A Study on Metal Materials Thickness

机译:兼容感应线圈与柱疗法传感器的兼容感应线圈:金属材料厚度研究

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This study presents an analysis of the parameters to generate the electromagnetic fields of the induction coils for the application of Hall Effect sensor to classify the aluminum thickness and the classification of the metal materials. In this research three types of induction coil are considered: Type A with one layer, Type B with two layers, and Type C with three layers. Four experiments were conducted. The electromagnetic field of Type C is found to be 11.90% greater than Type B, and 29.26% greater than Type A. The core temperature of Type C with 1 A current applied was found to be 3.50% hotter than Type B and 5.14% hotter than Type A. The classification of the aluminum thickness with the frequency range of 100 Hz to 1.4 kHz are suitable for identifying the thickness of 1, 2 and 3 mm. In terms of the classification of metal materials with all the three types of the induction coil, it can be separated clearly from the samples which consist of steel, stainless steel and aluminum. The total error by using Hall Effect sensor is ± 0.5702%.
机译:这项研究提出的参数进行分析,以产生所述感应线圈用于霍尔效应传感器的应用到铝厚度和金属材料的分类进行分类的电磁场。在本研究中三种类型的感应线圈的被认为是:A型具有一个层,B型具有两层,和C型具有三个层。四个实验。 C型的电磁场被发现是11.90%大于B型,和29.26%大于A型应用类型C的核心温度与1个的电流被发现是3.50%温度高于B型和5.14%较热比A型铝厚度为100赫兹到1.4千赫兹的频率范围内的分类是合适的用于识别的1,2和3毫米的厚度。在所有的三种类型的感应线圈的金属材料的分类而言,可以清楚地从它由钢,不锈钢和铝的样品分离。通过使用霍尔效应传感器的总误差为±0.5702%。

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