监测滚动支架主轴弹性扭矩的遥测系统

IF 3.3 Q2 ENGINEERING, MANUFACTURING
S. S. Voronin, B. Loginov, O. Gasiyarova, Sergey A. Evdokimov, A. Karandaev, V. Khramshin
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引用次数: 0

摘要

本文概述了建立在线遥测系统对轧机设备技术状况进行在线监测的意义。文章介绍了板材轧机 5000 水平机架的机电系统在工件进入机架时的冲击载荷造成的恶劣条件下运行的情况。报告指出,超过额定电机扭矩数倍的动态扭矩过载会导致主轴接头疲劳失效和轧辊断裂。因此,开发和实施主轴弹性扭矩监控系统迫在眉睫。对这一问题的研究由来已久,但参考文献并未提供有关此类系统的构建原理和硬件组成的信息。使用根据平衡电桥电路连接的应变片来测量弹性扭矩是合理的。本文的贡献在于,在分析已知测量和传输诊断数据技术的基础上,提出了构建遥测监控系统的模块化原理。本文提供了所开发的系统结构,并解释了数据传输和处理的概念。本文建议在不使用电池的情况下为安装在轴上的测量装置提供感应式电源。开发的硬件结构可应用于测量、传输和显示与弹性扭矩成比例的信号的系统中,该系统是在领先公司的数据测量仪器基础上制造的。考虑了应变片的放置和连接细节。还介绍了为信号编码器提供无线供电以及在发射器和接收器之间进行数字数据传输的硬件。提供了在 Mill 5000 上实施该系统的结果。图中显示了遥测环和接收头的安装,用于感应供电和数据接收。通过实施在驱动加速模式下提供咬合的驱动控制算法,对工件进入保持架时产生的弹性扭矩进行了实验评估。测量弹性扭矩的可靠性得到了证实,误差不超过 ±5%;由于消除了主轴接头处角度间隙闭合时产生的冲击,主轴上的动态负载减少了 1.3-1.5 倍。这延长了机械设备的使用寿命,降低了消除事故后果的成本。此外,还展示了将所开发的系统改造成用于监控轧机机电设备状况的网络物理系统的前景。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Telemetry System to Monitor Elastic Torque on Rolling Stand Spindles
This article outlines the relevance of building online telemetry systems for online monitoring of the technical conditions of rolling mill equipment. Electromechanical systems of the horizontal stand of the plate Mill 5000 are described, when operating in harsh conditions caused by the shock loading when workpieces enter the stand. It is noted that dynamic torque overloads, exceeding the rated motor torque by many-fold, cause the fatigue failure of spindle joints and breakage of rolls. In this regard, the development and implementation of systems for monitoring the elastic torque on spindles are extremely urgent. This issue has long been studied, but the references provide no information on the building principles and hardware composition of such systems. The use of strain gauges connected according to a balanced bridge circuit to measure the elastic torque is justified. This paper’s contribution is the proposed modular principle for building a telemetry monitoring system based on the analysis of known techniques for measuring and transmitting diagnostic data. The developed system structure is provided and the concept of data transfer and processing are explained. This article suggests the inductive power supply of a measuring unit mounted on a shaft without the use of batteries. A hardware structure was developed to be applied in a system for measuring, transmitting, and visualizing signals proportional to the elastic torque, manufactured on the basis of data measuring instruments by leading companies. The specifics of placement and connection of strain gauges are considered. The hardware providing a wireless power supply to the signal encoder and digital data transfer between the transmitter and receiver is described. The results of implementing the system on Mill 5000 are provided. The installation of a telemetry ring and a receiving head for the inductive power supply and data reception is shown. An experimental assessment of the elastic torques occurring when workpieces enter the cage was obtained by implementing a drive control algorithm which provided biting in the drive acceleration mode. The reliability of measuring the elastic torque with an error not exceeding ±5% and the reduction of dynamic loads on the spindle by 1.3–1.5 times due to the elimination of impacts from closing angular gaps in spindle joints was confirmed. This increases the service life of mechanical equipment and reduces the cost of eliminating the accident aftermath. The prospect of modifying the developed system into a cyber-physical system for monitoring the rolling mill’s mechatronic equipment conditions is shown.
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来源期刊
Journal of Manufacturing and Materials Processing
Journal of Manufacturing and Materials Processing Engineering-Industrial and Manufacturing Engineering
CiteScore
5.10
自引率
6.20%
发文量
129
审稿时长
11 weeks
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