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Continuous extrusion and rolling forming of copper strips

机译:连续挤出和轧制成型铜带

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Continuous extrusion and rolling technology was proposed as a new strip production technology. It conducts a hot rolling process using waste heat after continuous extrusion. The continuous extrusion and rolling forming was simulated with DEFORM-3D~T. Influences of extrusion wheel velocity and rolling reduction on the continuous extrusion and rolling forming were analyzed. It was shown that as extrusion wheel velocity increases, torque of extrusion wheel, chamber force and rolling force, will drop; temperature of the billet in the area of abutment which is highest will increase. As the rolling reduction is increased, torque of the extrusion wheel and force acting on the chamber decrease, while torque and force of the rolls increase. The experimental results showed that a homogeneously distributed and equiaxed grains microstructure can be formed in copper strip billets with an average grain size of about 80 m, after continuous extrusion. Grains of the copper strips are stretched clearly, during rolling, along the rolling direction, to form a stable orientation. Nevertheless, the grain boundaries are still relatively clear to see.
机译:连续挤出和轧制技术被提出为新的条带生产技术。连续挤出后,它使用废热进行热轧工艺。用变形-3D〜T模拟连续挤出和轧制成形。分析了挤出轮速度和轧制对连续挤出和轧制成形的影响。结果表明,随着挤压轮速度增加,挤出轮的扭矩,腔室力和轧制力将掉落;最高座椅区域的坯料的温度将增加。随着轧制减小的增加,挤出轮的扭矩和作用在腔室上的力减小,而辊的扭矩和力增加。实验结果表明,在连续挤出后,可以在铜带坯料中形成均匀分布和等式的晶粒微观结构。在沿轧制方向滚动期间形成铜条的晶粒清晰地拉伸以形成稳定的取向。然而,谷物边界仍然相对明显。

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