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首页> 外文期刊>Journal of teoretical and applied mechanics >AN ANALYTICAL APPROACH TO PREDICTION OF INTERNAL DEFECTS DURING THE FLAT ROLLING PROCESS OF STRAIN-HARDENING MATERIALS
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AN ANALYTICAL APPROACH TO PREDICTION OF INTERNAL DEFECTS DURING THE FLAT ROLLING PROCESS OF STRAIN-HARDENING MATERIALS

机译:应变硬化材料的扁平轧制过程中内部缺陷的一种预测分析方法

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摘要

In this paper, the upper bound method has been used in analysis of the flat rolling process and prediction of internal defects for a strain-hardening material. The arc of contact has been replaced by a chord. The inlet shear boundary of the deformation zone has been assumed as an exponential curve and the boundary at the exit has been assumed as a cylindrical surface. A kinematically admissible velocity field has been proposed and internal, shear and frictional power terms have been derived. By minimizing the total power with respect to the neutral point position and the shape of the inlet shear boundary, the rolling torque has been determined. A criterion has been presented to predict the occurrence of the internal defects for given rolling conditions. Comparison of the analytically developed approach for rolling torque and internal defects with published theoretical and experimental data shows generally good agreement.
机译:在本文中,上限方法已用于分析扁钢轧制过程和预测应变硬化材料的内部缺陷。接触弧已被和弦代替。变形区的入口剪切边界被假定为指数曲线,出口处的边界被假定为圆柱面。提出了运动学上允许的速度场,并推导了内部,剪切和摩擦功率项。通过最小化相对于中性点位置和入口剪切边界形状的总功率,可以确定滚动扭矩。已经提出了一个标准来预测给定轧制条件下内部缺陷的发生。将轧制扭矩和内部缺陷的分析开发方法与已发表的理论和实验数据进行比较,表明总体上吻合良好。

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