首页> 外文期刊>International Journal of Precision Engineering and Manufacturing >Short Stroke Control Model for Improving Width Precision at Head and Tail of Slab in Hot Vertical-Horizontal Rolling Process
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Short Stroke Control Model for Improving Width Precision at Head and Tail of Slab in Hot Vertical-Horizontal Rolling Process

机译:用于改善热垂直水平轧制工艺宽度精度的短行程控制模型

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摘要

The objectives of this study were to analyze the width changes about the head and tail ends of the slab occurring during vertical-horizontal rolling using finite element (FE) analysis, and to derive an appropriate short stroke control (SSC) model for vertical-horizontal rolling based on the results of analyses. The relationship between the process variables and slab deformation about the head and tail ends, including width shrinkage and length of width shrinkage, was derived using the linear regression method. From considering the amount of slab deformation, an advanced SSC model for vertical-horizontal rolling process has been developed. The proposed SSC model was verified via an FE simulation. Vertical rolling simulations were performed using the roll gap that was calculated via the respective SSC model for each steel slab. Horizontal rolling simulations were also conducted. Cropping lengths about the head and tail ends that were regulated by width control standards of the specific work site were compared.
机译:本研究的目的是分析使用有限元(FE)分析在垂直水平轧制期间发生的板坯的头部和尾端的宽度变化,并导出用于垂直水平的适当短程控制(SSC)模型基于分析结果的轧制。使用线性回归方法导出过程变量与尾端的处理变量和板坯变形的关系,包括宽度收缩和宽度收缩的长度。从考虑平板变形量,已经开发了一种用于垂直水平轧制过程的高级SSC模型。通过FE模拟验证所提出的SSC模型。使用通过每个钢板计算的各个SSC模型计算的辊隙进行垂直滚动模拟。还进行了水平滚动模拟。比较了由宽度控制标准的头部和尾端的裁剪长度进行了特定工作现场的宽度控制标准。

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