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首页> 外文期刊>Materials Science and Technology: MST: A publication of the Institute of Metals >Finite element modelling of effects of roll gap geometry in hot rolling
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Finite element modelling of effects of roll gap geometry in hot rolling

机译:热轧中辊缝几何形状影响的有限元建模

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摘要

In hot rolling, rolling load, torque, motor power, and energy are important measurable process outputs that are influenced by the shape and size of the roll gap. The magnitudes of these output variables are dependent on the extent of inhomogeneous deformation during a rolling pass, which is characterised by the redundant shear strain. A previously developed and validated finite element model is used to simulate the deformation behaviour in a rolling pass. The effects of initial slab thickness, reduction, roll diameter, and speed on the rolling load, torque, temperature distribution in the stock, and redundant shear strain have been computed for rolling of Type 316L stainless steel. Two new concepts - the 'net shear angle' and the 'average shear strain1 of a rolling pass have been introduced to quantify the degree of inhomogeneity in deformation. Finally, the results are compared with those of similar rolling theories.
机译:在热轧中,轧制载荷,转矩,电动机功率和能量是重要的可测量过程输出,受辊缝形状和尺寸的影响。这些输出变量的大小取决于轧制过程中不均匀变形的程度,其特征是多余的剪切应变。使用先前开发和验证的有限元模型来模拟轧制道次的变形行为。对于316L不锈钢轧制,已经计算了初始板坯厚度,压下量,轧辊直径和速度对轧制载荷,扭矩,坯料中的温度分布和冗余剪切应变的影响。引入了两个新概念-轧制道次的“净剪切角”和“平均剪切应变1”来量化变形的不均匀程度。最后,将结果与类似滚动理论的结果进行比较。

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