摘要
Combining the processing maps with FEA,the critical values of reduction of diameter(ΔR) for the appearance of as-cast microstructure,dynamic recrystallization grains and twins in the swaged magnesium were respectively studied,by which the rational range ofΔR was obtained.To ensure that the as-cast microstructure wouldn't be retained in the rotary-swaged magnesium,ΔR should be larger than 0.25 mm.To avoid the appearance of twins in the microstructure of rotary-swaged magnesium,ΔR should be less than 1.0 mm.ΔR should be between 0.25 mm and 1.0 mm to ensure the appearance of recrystallized grains.The surface roughness of rotary-swaged magnesium increases with the increase ofΔR by quadratic function.The simulated results accord well with the experimental data.In the process control of rotary-swaging(RS),ΔR should be maximized between 0.25 mm and 1.0 mm on the precondition that the requests for surface roughness have been satisfied.
Combining the processing maps with FEA, the critical values of reduction of diameter (AR) for the appearance of as-cast microstructure, dynamic recrystallization grains and twins in the swaged magnesium were respectively studied, by which the rational range of AR was obtained. To ensure that the as-cast microstructure wouldn't be retained in the rotary-swaged magnesium, AR should be larger than 0.25 mm. To avoid the appearance of twins in the microstructure of rotary-swaged magnesium, AR should be less than 1.0 mm. △R should be between 0.25 mm and 1.0 mm to ensure the appearance of recrystallized grains. The surface roughness of rotary-swaged magnesium increases with the increase of △R by quadratic function. The simulated results accord well with the experimental data. In the process control of rotary-swaging(RS), △R should be maximized between 0.25 mm and 1.0 mm on the precondition that the requests for surface roughness have been satisfied.
出处
《中国有色金属学会会刊:英文版》
CSCD
2008年第A01期263-268,共6页
Transactions of Nonferrous Metals Society of China
基金
Project(2007CB613706)supported by the National Basic Research Program of China
Project(52009999200702)supported by theInitiating Fund of Doctors'Research of Beijing University of Technology.China
关键词
旋揉工艺
金属成形工艺
金属学
FEA
magnesium
rotary swaging
FEA
processing optimization
microstructure