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Intensification of Tube Plugging Based on Simulation Results

机译:基于仿真结果的管堵塞强化

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A new tube plugging process is described and studied on a lengthwise rolling mill installed on PRP-140 of the Sinara Pipe Plant. The deformation of a shell on a plug in a lengthwise rolling mill is studied using the finite-element method. The behavior of the dimensionless parameters characterizing the deformation of the metal in the groove tapers with variation in the elongation ratio of the shell is established. The effect of the ovality and kinematic tension of the shell on its deformation during plugging is analyzed through computer-aided simulation. It is established that applying kinematic tension and preovalization to the shell increases the elongation ratio by 37%, decreases the variation in wall thickness, and extends the range of tube grades produced with an automatic tube rolling mill.
机译:描述了一种新的管堵井工艺,并在Sinara管道Prp-140上安装的纵向轧机上进行研究。 使用有限元法研究钢轧机中塞子上的壳体的变形。 建立了具有在壳体伸长率的延伸比中变化的沟槽锥度中金属变形的无量纲参数的行为。 通过计算机辅助模拟分析了壳体对壳体对壳体变形的影响。 建立施加运动张力和对壳体的预次化将伸长率增加37%,降低壁厚的变化,并延伸用自动管轧机生产的管档。

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