Mathematical fundamentals of the method of identification of metal inclusions in raw materials with automatic determination of their coordinates

L. Zamikhovskyi, Ivan Levitskyi, Mykola Nykolaychuk, Yuriy Striletskyi
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Abstract

The article deals with the actual problem of theoretical substantiation of the method of identification (diagnosis) of metal inclusions (hereinafter referred to as metal inclusions) in bulk raw materials under the conditions of a conveyor belt. The presence of metal inclusions in the raw material transported by the conveyor belt can lead to both emergencies and deterioration in the quality of the output product. The identification method provides for diagnosing the presence of metal inclusions, determining its dimensions, type of metal and coordinates relative to the cross-section of the conveyor belt. The results of theoretical and experimental studies of the method for identifying metal inclusions based on a scanning signal and an additional excitation coil are considered. A mathematical model has been developed for determining the position of metal inclusions on a conveyor belt relative to a line perpendicular to the axis between two excitation coils, including two trajectories for determining coordinates for three excitation coils and two receiving coils.
用坐标自动测定原料中金属夹杂物的方法的数学基础
本文论述了输送带条件下散装原料中金属夹杂物(以下简称金属夹杂物)识别(诊断)方法的理论证实的实际问题。在传送带输送的原料中存在金属夹杂物会导致紧急情况和输出产品质量的恶化。该识别方法用于诊断金属夹杂物的存在,确定其尺寸、金属类型和相对于传送带横截面的坐标。考虑了基于扫描信号和附加激励线圈的金属夹杂识别方法的理论和实验研究结果。建立了用于确定传送带上金属夹杂物相对于与两个激励线圈之间的轴线垂直的线的位置的数学模型,包括确定三个激励线圈和两个接收线圈坐标的两个轨迹。
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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