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Theoretical and experimental investigation of cold rolling of tri-layer strip

机译:三层带钢冷轧的理论与实验研究

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摘要

A mathematical model for cold rolling of symmetrical sandwich strip is proposed using the upper bound theprem to investigate the plastic deformation behavior of the strip at the roll gap. The velocity fields derived from the proposed upper bound model can satisfy automatically the volume constancy and the velocity boundary conditions within the roll gap. Effects of various rolling conditions such as the initial thickness and flow stress of each layer in the strip, total thickness reduction and the frictional condition between the strip and roll on the rolling power, rolling force, and thickness reduction of each layer are discussed. Furthermore, experiments on sandwich strip rolling are conducted by employing aluminum, mild steel, copper as the layers of the sandwich strips. It is found that all of theoretical predictions are in good agreement with the experimental measurements. Through the study, it becomes clear that the proposed analytical method is applicable for simulating the cold rolling process of the tri-layer strip and is able to offer a useful knowledge in manufacturing the sandwich sheets and strips.
机译:建立了对称夹芯板冷轧的数学模型,利用上限边界条件研究了夹芯板在轧制缝隙处的塑性变形行为。从提出的上限模型导出的速度场可以自动满足轧辊间隙内的体积常数和速度边界条件。讨论了各种轧制条件,例如带材中各层的初始厚度和流动应力,总厚度减小以及带材与辊之间的摩擦条件对轧制力,轧制力和各层厚度减小的影响。此外,通过将铝,低碳钢,铜用作夹心条的层来进行夹心条轧制的实验。发现所有的理论预测与实验测量结果吻合良好。通过研究,可以清楚地看出,所提出的分析方法可用于模拟三层带材的冷轧过程,并且能够为制造夹心板和带材提供有用的知识。

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