Influence of Bi addition on dynamic recrystallization and precipitation behaviors during hot extrusion of pure Mg

被引:23
作者
Jongbin Go [1 ]
Jong Un Lee [1 ]
Hui Yu [2 ]
Sung Hyuk Park [1 ]
机构
[1] School of Materials Science and Engineering, Kyungpook National University
[2] School of Materials Science and Engineering, Hebei University of Technology
基金
新加坡国家研究基金会;
关键词
Magnesium; Bi addition; Extrusion; Recrystallization; Precipitation;
D O I
暂无
中图分类号
TG379 [有色金属及合金挤压];
学科分类号
080201 ; 080503 ;
摘要
Low material cost and high extrudability for ensuring price competitiveness with Al alloys, as well as excellent mechanical properties, are essential for expanding the application range of Mg extrudates. Bi is a promising alloying element for developing extruded Mg alloys that satisfy such requirements. Bi is inexpensive, exhibits a high solubility limit, and forms a thermally stable Mg3Bi2phase, which improves the commercial viability and enables the high-speed extrusion of Mg–Bi alloys. In this study, the effects of Bi addition on the dynamic recrystallization(DRX) and dynamic precipitation behaviors during hot extrusion of a pure Mg and the resultant microstructure and mechanical properties of the extruded materials were investigated. The addition of 6 wt% and 9 wt% Bi to a pure Mg yielded numerous fine Mg3Bi2precipitates during the early stage of hot extrusion. Consequently, the area fraction of dynamic recrystallized(DRXed) grains decreased because of DRX-behavior suppression by the Zener pinning effect.However, the DRXed grain size was substantially reduced through the grain-boundary pinning effect.The size and number of undissolved Mg3Bi2particles in the homogenized billets increased when the Bi content was increased, which resulted in increased DRX fractions owing to the enhanced levels of particle stimulated nucleation. Bi addition yielded considerable strength improvement of the extruded pure Mg. However, the extruded Mg–Bi binary materials were less ductile than the extruded pure Mg material. This lower ductility resulted from the cracking at twins formed in the coarse un DRXed grains of the Mg-6Bi material and the cracking at large undissolved Mg3Bi2particles in the Mg-9Bi material.
引用
收藏
页码:62 / 75
页数:14
相关论文
共 26 条
[1]   Bi添加对挤压纯Mg组织和力学性能的影响 [J].
孟帅举 ;
余晖 ;
张慧星 ;
崔红卫 ;
王志峰 ;
赵维民 .
金属学报, 2016, 52 (07) :811-820
[2]  
Magnesium extrusion alloys: a review of developments and prospects[J] . Zhuoran Zeng,Nicole Stanford,Christopher Huw John Davies,Jian-Feng Nie,Nick Birbilis.International Materials Reviews . 2019 (1)
[3]  
Superior room temperature ductility of magnesium dilute binary alloy via grain boundary sliding[J] . Hidetoshi Somekawa,Alok Singh.Scripta Materialia . 2018
[4]  
Microstructural evolution and improvement in mechanical properties of extruded AZ31 alloy by combined addition of Ca and Y[J] . Sang-Hoon Kim,Sang Woo Bae,Sang Won Lee,Byoung Gi Moon,Ha Sik Kim,Young Min Kim,Jonghun Yoon,Sung Hyuk Park.Materials Science & Engineering A . 2018
[5]  
Individual effect of recrystallisation nucleation sites on texture weakening in a magnesium alloy: Part 2- shear bands[J] . Dikai Guan,W. Mark Rainforth,Junheng Gao,Le Ma,Brad Wynne.Acta Materialia . 2018
[6]  
Individual effect of recrystallisation nucleation sites on texture weakening in a magnesium alloy: Part 1- double twins[J] . Dikai Guan,W. Mark Rainforth,Junheng Gao,Joanne Sharp,Brad Wynne,Le Ma.Acta Materialia . 2017
[7]  
Microstructure and mechanical properties of an extruded Mg-8Bi-1Al-1Zn (wt%) alloy[J] . Shuaiju Meng,Hui Yu,Huixing Zhang,Hongwei Cui,Sung Hyuk Park,Weiming Zhao,Bong Sun You.Materials Science & Engineering A . 2017
[8]  
Strong and ductile age-hardening Mg-Al-Ca-Mn alloy that can be extruded as fast as aluminum alloys[J] . T. Nakata,C. Xu,R. Ajima,K. Shimizu,S. Hanaki,T.T. Sasaki,L. Ma,K. Hono,S. Kamado.Acta Materialia . 2017
[9]  
A review of dynamic recrystallization phenomena in metallic materials[J] . K. Huang,R.E. Logé.Materials & Design . 2016
[10]  
Rare earth texture and improved ductility in a Mg-Zn-Gd alloy after high-speed extrusion[J] . M.G. Jiang,C. Xu,T. Nakata,H. Yan,R.S. Chen,S. Kamado.Materials Science & Engineering A . 2016