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Wear Compensation Model Based on the Theory of Archard and Definite Integral Method

机译:基于ARCRARD理论的磨损补偿模型

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摘要

Aiming at low accuracy control of the flatness measuring system in cold rolling process, the wear of measuring rings of the flatness measuring roll is an important factor, which affects the flatness measurement accuracy and the strip quality. When the radial pressure and the width of the strip change, the wear thickness of the different measuring rings is also changed, which seriously increased the deviation between measured values and actual values. For thirty-eight measuring rings of flatness measuring roll, it is important to establish an accurate wear compensation model for each measuring ring to improve the measurement accuracy of the online flatness control model. Wear compensation model is established by the theory of Archard, definite integral method, and weighted coefficient method, and the data of the rolling length, strip width, and the radial force of the six million tons’ strip are used to analyze and discuss the wear compensation model of flatness measuring roll. The experiment result shows that the flatness control accuracy is improved effectively and the better strip shape can be achieved.
机译:针对冷轧过程中平坦测量系统的低精度控制,平坦测量辊的测量环的磨损是一个重要因素,这影响了平坦度测量精度和条带质量。当径向压力和条带的宽度变化时,不同测量环的磨损厚度也改变,这严重增加了测量值和实际值之间的偏差。对于38个平坦测量辊的测量环,重要的是为每个测量环建立精确的磨损补偿模型,以提高在线平面控制模型的测量精度。磨损补偿模型由Archard理论,定积分方法,和加权系数的方法,和轧制长度的数据,条带的宽度,和600万吨带的径向力建立用于分析和讨论的磨损平坦测量辊的补偿模型。实验结果表明,有效地提高了平坦度控制精度,并且可以实现更好的条带形状。

著录项

  • 作者

    Pei-Feng Niu; Bao-Liang Tian;

  • 作者单位
  • 年度 2018
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
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