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Capacitance Measurement of Molten Metal Level in Continuous Casting System

机译:连铸系统中熔融金属液位的电容测量

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摘要

The accuracy of molten metal level measurement is the base of controlling the molten metal level, which greatly affects the production quality. Due to the oscillation of the caster mold, hot temperature, and noises in the continuous casting sys-tem, the accurate level is hard to obtain. Currently used molten metal level measurement technique includes radioisotope trans-mission, electromagnetic, ultrasound reflection, microwave re-flection, computer vision, and capacitive level measurement method. The radioisotope transmission method has potentially hazardous to exposed workers, while the electromagnetic method needs to maintain the coil frequently for the large excitation source needed, the ultrasound reflection method, micro-wave reflection method and computer vision method can be affected by the casting powder used for preventing molten metal splash. In this work, a new structure of the capacitance sensor designed for minimizing the influence of caster mold’s oscillation and improving heat dissipation was proposed, the variation of capacitance between the sensor electrode and the caster mold with molten metal level change and the oscillation of the caster mold was calculated in simulation and validate through a grounded simulation tank with capacitance to digital converter FDC1004. The result shows that the proposed capacitance sen-sor can achieve an accuracy of 1 mm when the distance between the molten metal surface to the sensor within 80 mm with 2 sam-ples per second report speed.
机译:熔融金属液位测量的准确性是控制熔融金属液位的基础,这极大地影响了生产质量。由于连铸结晶器的振动,高温和连铸系统中的噪音,很难获得准确的水平。当前使用的熔融金属液位测量技术包括放射性同位素透射,电磁,超声反射,微波反射,计算机视觉和电容式液位测量方法。放射性同位素传输方法可能会对裸露的工人造成危害,而电磁方法需要经常维护线圈以获取所需的大量激发源,而超声反射方法,微波反射方法和计算机视觉方法可能会受到所用铸粉的影响。用于防止熔融金属飞溅。在这项工作中,提出了一种新的电容传感器结构,该结构旨在最小化脚轮模具的振动的影响并改善散热,随着熔融金属液位的变化和脚轮的振动传感器电极和脚轮模具之间的电容变化。在仿真中对模具进行了计算,并通过具有电容数字转换器FDC1004的接地仿真罐进行了验证。结果表明,当熔融金属表面到传感器之间的距离在80 mm以2 samps / s的速度报告时,所提出的电容传感器可以达到1 mm的精度。

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