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Influence of Roll Speed Schedule on Continuous Tube Rolling Process of Semi-Floating Mandrel Mill

机译:辊速表对半浮动磨机连续管轧制过程的影响

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In continuous tube rolling process, it has an obvious influence on the stability of rolling process, tools wear and the quality of rolled hollow tube that configuration of roll rotational speed per stand. In this paper, various roll working diameters per stand are determined by velocity integral method (VIT) and FEM respectively, and two roll rotational speed schedules are obtained correspondingly based on 133 main pass sequence of 89mm 6-stand semi-floating mandrel mill. With the aid of commercial FE code MSC.SuperForm, the high pressure boiler steel tube continuous rolling process of a typical hollow tube specification 133.0×5.2mm are simulated, and force parameters, transverse wall thickness precision, outline dimension and real roundness of rolled hollow tube and clearance between the mandrel and rolled hollow tube are analyzed and compared on the condition of two different roll rotational speed schedules, which provides scientific basis for configuring reasonable roll rotational speed per stand in pass design and optimization. Analysis results indicate that roll working diameter obtained per stand is smaller and roll rotational speed configured is higher correspondingly using FEM compared to VIT. Using FEM, there exist front and back tensions between stands and maximal rolling force, rolling moment and mandrel axial force decrease 10% or so in continuous tube rolling process, and outline dimension and real roundness of rolled hollow tube is better. However, transverse wall thickness of rolled hollow tube at the bottom of groove is pulled thin slightly, and clearance between the mandrel and rolled hollow tube is less than normal.
机译:在连续管轧制工艺中,对轧制工艺稳定性的影响,工具磨损和轧制空心管的质量具有显而易见的影响,该轧辊旋转速度的轧辊旋转速度。在本文中,每支架的各种辊工作直径分别由速度整体方法(VIT)和有限元分别确定,并且基于89mm 6支架半浮动Mandrel磨机的133主通过序列,相应地获得两个辊旋转速度。借助商业Fe代码MSC.Uperform,模拟典型中空管规格的高压锅炉钢管连续轧制工艺133.0×5.2mm,并力参数,横壁厚度精度,轮廓尺寸和轧制空心的真正圆形在两个不同的辊旋转速度调度的条件下分析和轧制中空管之间的管和轧制中空管之间的间隙,为通过设计和优化进行了科学依据。分析结果表明,每个支架获得的辊工作直径较小,并且与Vit相比,使用FEM相应地使用FEM更高的辊旋转速度。使用FEM,在连续管轧制过程中,滚动力矩和心轴轴向力下降10%左右,滚动力矩和心轴轴向力降低,卷曲尺寸和轧制空心管的实际圆度更好。然而,凹槽底部的卷起的中空管的横壁厚度稍微拉薄,心轴和轧制中空管之间的间隙小于正常。

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