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Analysis of asymmetrical cold rolling with varying coefficients of friction

机译:摩擦系数变化的非对称冷轧分析

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In this research, asymmetrical cold rolling was produced by the difference in the coefficient of friction between rails and sheets rather than the difference of roll radius or rotation speeds. The influence of friction coefficient ratio on the cross shear deformation, rolling pressure and torque was investigated using slab analysis. The results showed that the shear deformation zone length increased with the increase of the friction coefficient ratio. The rolling force decreased only under the condition that the friction coefficient ratio increased while the sum of the friction coefficients was held constant. As the reduction per pass was increased, the shear deformation zone length increased and the rolling force also increased. An increase of the front tension resulted in a decrease of the shear deformation zone length. An increase of back tension, however, led to an increase of the shear deformation zone length. The reduction of rolling torque for the work roll with higher surface roughness was greater than that for the work roll with lower surface roughness.
机译:在这项研究中,不对称冷轧是由钢轨和薄板之间的摩擦系数差异而不是轧辊半径或转速差异引起的。利用平板分析法研究了摩擦系数比对横向剪切变形,轧制压力和转矩的影响。结果表明,剪切变形区长度随摩擦系数比的增加而增加。仅在摩擦系数之和保持恒定的情况下,在摩擦系数比增加的条件下,滚动力才降低。随着每道次压下量的增加,剪切变形区长度增加,轧制力也增加。前张力的增加导致剪切变形区长度的减小。然而,背张力的增加导致剪切变形区长度的增加。具有较高表面粗糙度的工作辊的轧制扭矩的减小大于具有较低表面粗糙度的工作辊的轧制扭矩的减小。

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