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Microstructure and Properties of Copper Tube During Three-Roll Planetary Rolling

机译:三辊行星轧制过程中铜管的组织和性能

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摘要

During three-roll planetary rolling, the microstructure of copper tube with initial columnar grains develops into an equiaxed grain structure due to the large rolling deformation and high rolling temperature. The microstructure of copper tubes significantly influences formability and properties due to the three-roll planetary rolling operation. It is very important to understand the microstructural evolution for such special processing. It was found that dynamic recrystallization occurred at the concentrating deformation zone, followed by rapid grain expansion that gradually stabilized. Corresponding with the transformation of microstructure, the hardness of the tube billet reduced gradually away from the roller’s concentrating deformation zone. The changing of roller velocity is responsible for the extreme evolution of the microstructure in the concentrating deformation zone. Therefore, the properties of copper tubes can be controlled by concentrating the deformation zone. This research can facilitate the application of planetary rolling to the manufacture of tubes for low formability materials.
机译:在三辊行星轧制过程中,由于轧制变形大和轧制温度高,具有初始柱状晶粒的铜管的显微组织发展成等轴晶组织。由于三辊行星式轧制操作,铜管的微观结构会显着影响可成形性和性能。了解这种特殊加工的微观结构演变非常重要。发现在集中变形区发生动态再结晶,随后晶粒迅速膨胀并逐渐稳定。与微观结构的转变相对应,管坯的硬度逐渐远离辊子的集中变形区而降低。轧辊速度的变化是导致集中变形区组织发生极端变化的原因。因此,可以通过集中变形区来控制铜管的性能。这项研究可以促进行星轧制在低成形性材料管材制造中的应用。

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