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Numerical Simulation of Seamless Tube's Stretch Reducing Process

机译:无缝管拉伸减少过程的数值模拟

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摘要

The stretch reducing process is the last hot deformation process of the hot-rolled seamless steel tube's production. Its role is to decrease the tube's diameter under the large tension and expand the range of product specifications. But the stretch reducing process often results in wall thickness tolerance at the head and end of the tube. In order to solve the problem, a 3D elastic-plastic finite element analysis model was established to simulate the stretch reducing process of Φ159 unit. Based on this, the tube's wall thickness distribution was studied and the parameters of sharpen rolling process was put forward. Numerical simulation results indicate that with the parameters of sharpen rolling process, the length of wall thickness tolerance was shorten and the rate of finished products was proved.
机译:拉伸减少过程是热轧无缝钢管生产的最后热变形过程。 其作用是降低管道在大张力下的直径,并扩大产品规格范围。 但是拉伸减小过程通常导致管的头部和端部的壁厚容差。 为了解决问题,建立了一种3D弹塑性有限元分析模型来模拟φ159单元的拉伸减小过程。 基于此,研究了管的壁厚分布,提出了锐化轧制过程的参数。 数值模拟结果表明,随着锐化轧制工艺的参数,壁厚耐受的长度缩短,证明了成品的速率。

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