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Experimental Study on Magnetic Induction Properties of PVC Pipe in Electronic Anti-Fouling Technology

机译:电子防污技术中PVC管磁感应特性的实验研究

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摘要

Magnetic induction intensity is a crucial factor for determining the effect of electronic anti-fouling technology, while current is an important factor in determining the strength of magnetic induction intensity. The series resistance method is used in an electronic anti-fouling system in order to get the current value in the coil wrapped around the PVC pipe. The peak current in the circuit is obtained by measuring the voltage crossing series resistance, and the magnetic induction intensity in the midpoint of the solenoid coil is calculated by formula. Then a series of experiments are carried out to explore the change rule of current and magnetic induction intensity with respect to frequency, turns, and diameter. At the end of experiments, the results show that current in the coil decreases with the increase of frequency, number of turns, and pipe diameter. Magnetic induction intensity basically does not change with the increase of turns, and it decreases as the frequency and the diameter increase. Through the analysis of experimental data, the excellent processing parameter of the electronic anti-fouling technology is put forward, which provides guidance for the design and manufacture of the control unit.
机译:磁感应强度是确定电子防污技术效果的关键因素,而电流是确定磁感应强度强度的重要因素。在电子防污系统中使用串联电阻法,以获取缠绕在PVC管周围的线圈中的电流值。电路中的峰值电流是通过测量电压交叉串联电阻获得的,电磁线圈中点的磁感应强度可通过公式计算。然后进行了一系列实验,以探索电流和磁感应强度相对于频率,匝数和直径的变化规律。在实验结束时,结果表明,线圈中的电流随频率,匝数和管径的增加而减小。磁感应强度基本上不随匝数的增加而变化,而随频率和直径的增加而减小。通过对实验数据的分析,提出了电子防污技术的优良工艺参数,为控制单元的设计和制造提供了指导。

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