简介概要

Microstructure Evolution of AZ31 Mg Alloy during Change Channel Angular Extrusion

来源期刊:Journal Of Wuhan University Of Technology Materials Science Edition2011年第4期

论文作者:刘宇

文章页码:654 - 657

摘    要:Microstructure evolution of AZ31 Mg alloy during change-channel angular extrusion (CCAE) was investigated. The grains of AZ31 Mg alloy were refined significantly from 500 mm to 15 mm after CCAE deformed at 523 K. Dislocations were induced at the initial stage of extrusion and they rearranged themselves to form dislocation boundaries and sub-grain boundaries during deformation. When the specimen through the horizontal change channel with the strain increased, the sub-boundaries evolved to high angle grain boundaries (HAGB). The process of grain refinement can be described as continuous dynamic recovery and recrystallization (CDRR).

详情信息展示

Microstructure Evolution of AZ31 Mg Alloy during Change Channel Angular Extrusion

刘宇

National Key Laboratory For Nuclear Fuel And Materials, Nuclear Power Institute of China

摘 要:Microstructure evolution of AZ31 Mg alloy during change-channel angular extrusion (CCAE) was investigated. The grains of AZ31 Mg alloy were refined significantly from 500 mm to 15 mm after CCAE deformed at 523 K. Dislocations were induced at the initial stage of extrusion and they rearranged themselves to form dislocation boundaries and sub-grain boundaries during deformation. When the specimen through the horizontal change channel with the strain increased, the sub-boundaries evolved to high angle grain boundaries (HAGB). The process of grain refinement can be described as continuous dynamic recovery and recrystallization (CDRR).

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