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首页> 外文期刊>Metallurgist >EVALUATING THE ADEQUACY OF A MATHEMATICAL MODEL OF THE PIERCING OF A BILLET INTO AN ULTRA-THICK-WALLED SHELL ON A TWO-HIGH ROTARY ROLLING MILL
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EVALUATING THE ADEQUACY OF A MATHEMATICAL MODEL OF THE PIERCING OF A BILLET INTO AN ULTRA-THICK-WALLED SHELL ON A TWO-HIGH ROTARY ROLLING MILL

机译:在两个高速旋转轧机上评估将子弹打孔成超厚壁壳的数学模型的适当性

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摘要

A physical experiment involving the piercing of a billet into an ultra-thick-walled shell is carried out on two-high mill 130D at the Moscow State Institute of Steel and Alloys. With the same process parameters as in the experiment, a mathematical model of the piercing operation is constructed by using the finite-element computing system in the software Deform 3D. The degree of agreement between the mathematical model and the physical experiment is evaluated on the basis of such indices as the geometric parameters of the pierced shell, the helix angle, and one of the kinematic characteristics - the time that elapses from the moment the billet contacts the rolls to the moment it contacts the mandrel.
机译:在莫斯科国立钢铁研究所的两辊轧机130D上进行了涉及将钢坯刺入超厚壁壳的物理实验。使用与实验中相同的工艺参数,通过使用Deform 3D软件中的有限元计算系统来构建穿孔操作的数学模型。数学模型与物理实验之间的一致性程度是根据诸如穿孔壳的几何参数,螺旋角和运动学特性之一(从钢坯接触时刻起经过的时间)等指标进行评估的滚到接触芯轴的那一刻。

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