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The effect of roll roughness on the rolling parameters during cold rolling of an aluminum alloy

机译:轧辊粗糙度对铝合金冷轧过程中轧制参数的影响

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The effects of the roughness of the work roll on the roll force, roll torque and the forward slip are investigated. Using a light mineral seal oil with 5 percent oleyl alcohol as a boundary additive, 6061-T6 aluminum alloy strips were cold rolled at various speeds to various reductions. The roll roughness, obtained by sand blasting, was varied from a low of 0.3-2.4 mum and the roll separating force, roll torque and the forward slip were measured. The coefficient of friction was calculated by Hill's formula and the friction factor was evaluated by using the upper bound approach. The roll and the rolled surfaces were examined. The process conditions under which starvation of the contact may have occurred were studied. The frictional mechanisms were identified. High roughness appeared to increase the possibility of insufficient lubrication at the interfaces. While both adhesive and ploughing forces were present in all instances, the ploughing forces became dominant at higher rolling speeds. The contribution of ploughing to frictional resistance increased as the roll roughness increased to a certain value and beyond that its behaviour depended on the rolling speed.
机译:研究了工作辊的粗糙度对轧制力,轧制扭矩和前滑的影响。使用含有5%乙醇作为边界添加剂的轻质矿物密封油,将6061-T6铝合金板条以各种速度冷轧至不同的压下率。通过喷砂获得的辊粗糙度在0.3-2.4μm的低范围内变化,并测量了辊分离力,辊转矩和前滑。摩擦系数通过希尔公式计算,摩擦系数通过上限方法进行评估。检查辊和辊压表面。研究了可能发生接触不足的工艺条件。确定了摩擦机理。高粗糙度似乎增加了界面处润滑不足的可能性。虽然在所有情况下都存在粘合力和耕作力,但在更高的轧制速度下,耕作力占主导地位。当轧辊粗糙度增加到一定值时,耕作对摩擦阻力的贡献增加,并且其行为取决于轧制速度。

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