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Microstructure evolution and mechanical properties of back extruded 7075 aluminum alloy at elevated temperatures

机译:高温下反向挤压7075铝合金的组织演变和力学性能

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摘要

The present work deals with the microstructural evolution and mechanical properties of 7075 aluminum alloy which has been backward extruded under different deformation conditions. The backward extrusion passes were carried out in the temperature range of 450-520 ℃ using different punch diameters (12 and 15 mm) and punch displacement velocities (5 and 25 mm/min). The results indicate that a combination of different recrystallization mechanisms (i.e., continuous, discontinuous and geometrical ones) may contribute to the formation of new recrystallized grains during applied backward extrusion process. A small specimen testing technique (shear punch testing method) was employed to evaluate the mechanical properties of backward extruded work-pieces at room temperature. The results showed that the corresponding mechanical properties have been improved through applied backward extrusion passes. It is also found that the shear strength and ductility values have been substantially influenced by the deformation temperature and punch velocity and punch diameter.
机译:本文研究了7075铝合金在不同变形条件下向后挤压后的组织演变和力学性能。在不同的冲头直径(12和15 mm)和冲头位移速度(5和25 mm / min)下,在450-520℃的温度范围内进行向后挤出道次。结果表明,在应用反向挤压过程中,不同的重结晶机制(即连续,不连续和几何的)的组合可能有助于形成新的重结晶晶粒。采用小型试样测试技术(剪切冲头测试方法)来评估室温下向后挤压工件的机械性能。结果表明,通过应用反向挤压道次,相应的机械性能得到了改善。还发现,剪切强度和延展性值已基本上受变形温度,冲头速度和冲头直径的影响。

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