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Strip tracking in hot strip mills

机译:热带钢轧机中的带钢跟踪

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摘要

In the finishing mill, steel strip is rolled from thick slabs through pairs of rollers housed in a continuous train of seven roll stands. As the strip is rolled, unwanted lateral movement, known as strip tracking, can cause the strip to collide with the edge of the mill. Strip tracking control is currently a manual operation, relying on the skill of the operators. When tracking is observed, the stand tilt is adjusted asymmetrically, causing a camber in the strip, steering it towards the centreline. Tracking control can be automated if a reliable measurement of position is available. A vision-based system was developed to measure strip position. Cooling water, steam, high temperatures and electrical noise create a hazardous environment for electronic equipment and hamper image analysis. Hardware was specified to protect all equipment against the environment. A novel image analysis method combining predictive elements, filtering and Bezier curve fitting was created to allow measurements to be made with large amounts of cooling water obscuring the strip edges. The measurement system was designed to integrate with the existing mill systems, using the OPC protocol for communication. The system was created as a development system with only two cameras included, but allowed for additional cameras to be easily added and automatically detected. The results of the system showed that the image analysis techniques were effective, providing an estimated final resolution of 3.5mm/pixel, with measurements ±2mm within 60% confidence. Hardware performance provided good protection of the equipment against the environment but poor quality installation limited overall system performance. A computer model was developed to simulate tracking behaviour in the mill with non-linear variations of strip properties across the strip. The model was not completed to a satisfactory standard capable of producing useful results but the theories described could be developed further.
机译:在精轧机中,钢带由厚板坯通过成对的,由七个轧机机架组成的连续列中的轧辊进行轧制。当轧制带钢时,不必要的横向移动(称为带钢跟踪)会导致带钢与轧机边缘碰撞。带钢跟踪控制目前是手动操作,取决于操作员的技能。观察到跟踪时,会不对称地调整支架的倾斜度,从而使带材产生外倾,将其转向中心线。如果可以进行可靠的位置测量,则可以自动进行跟踪控制。开发了基于视觉的系统来测量带钢位置。冷却水,蒸汽,高温和电噪声为电子设备创造了危险的环境并妨碍了图像分析。指定硬件以保护所有设备免受环境影响。创建了一种将预测元素,滤波和贝塞尔曲线拟合相结合的新颖图像分析方法,以允许使用大量冷却水遮盖带钢边缘进行测量。使用OPC协议进行通讯,可将测量系统设计为与现有工厂系统集成。该系统是作为开发系统创建的,其中仅包含两个摄像头,但允许轻松添加并自动检测其他摄像头。系统的结果表明,图像分析技术是有效的,估计最终分辨率为3.5mm /像素,测量结果的±2mm在60%置信度内。硬件性能为设备抵御环境提供了良好的保护,但安装质量差限制了整个系统的性能。开发了一个计算机模型来模拟轧机中带材性能的非线性变化,从而追踪轧机中的跟踪行为。该模型未完成到能够产生有用结果的令人满意的标准,但是所描述的理论可以进一步发展。

著录项

  • 作者

    Carruthers-Watt Benjamin;

  • 作者单位
  • 年度 2011
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  • 原文格式 PDF
  • 正文语种 English
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