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Influence of Wall Thickness Fluctuation of Pierced Shell on Continuous Tube Rolling Process of Semi-Floating Mandrel Mill

机译:刺穿壳体壁厚波动对半浮动曼犁磨机连续管轧制工艺的影响

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摘要

In continuous tube rolling process, wall thickness reduction per stand will be changed due to wall thickness fluctuation of pierced shell caused by piercing process, which results in changes in metal flow conditions and affects force parameters, deformation parameters, especially transverse wall thickness precision of rolled hollow tube. In this paper, with the aid of commercial FE code MSC.Super Form, the high pressure boiler steel tube continuous rolling process of a typical hollow tube specification 133.0×4.0mm are simulated based on 133 main pass sequence of 89mm 6-stand semi-floating mandrel mill, and force parameters, equivalent plastic strain, transverse wall thickness precision, outline dimension and real roundness of rolled hollow tube are analyzed and compared on the condition of two different wall thicknesses of pierced shell. Analysis results indicate that force parameters increase with wall thickness of pierced shell, maximal rolling force, rolling moment and mandrel axial force increase 10% or so in the first three stands when rolling pierced shell of wall thickness 11.5mm compared to that of wall thickness 10.5mm. When rolling pierced shell of wall thickness 10.5mm, there exist front and back tensions among the third, the fourth and the fifth stands and outline dimension and real roundness of rolled hollow tube is slightly better. However, transverse wall thickness of rolled hollow tube at the bottom of groove is pulled thin obviously.
机译:在连续管轧制工艺中,由于穿孔过程引起的壁均匀壳体的壁厚波动,每个支架的壁厚减小将导致金属流动条件的变化,并影响力参数,变形参数,尤其是滚动的横壁厚度精度。空心管。在本文中,借助商业Fe代码MSC.Super形式,基于89mm 6立体半的133主通道序列模拟了典型中空管规格的高压锅炉钢管连续轧制工艺133.0×4.0mm浮动心轴磨机,以及力参数,等效塑料应变,横壁厚度精度,轮廓尺寸和轧制空心管的真正圆度,并在两种不同壁厚的刺穿壳体的条件下进行比较。分析结果表明,力参数随着穿孔壳的壁厚而增加,最大轧制力,滚动力矩和心轴轴向力在前三架壁厚11.5mm的壁厚11.5mm相比时增加10%左右。毫米。当滚动壁厚的壁厚10.5mm时,第三个,第四个和第五站点和轮廓尺寸和轧制空心管的真正圆度略好,存在前后张力。然而,凹槽底部的卷起的中空管的横壁厚度明显薄薄。

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