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Atomic-resolution studies on reactions between basal dislocations and {1012} coherent twin boundaries in a Mg alloy
作者姓名:Huhu Su  Xinzhe Zhou  Shijian Zheng  Hengqiang Ye  Zhiqing Yang
作者单位:Shenyang National Laboratory for Materials Science, Institute of Metal Research, Chinese Academy of Sciences, School of Materials Science and Engineering, University of Science and Technology of China, Shenyang, 110016, China;State Key Laboratory of Reliability and Intelligence of Electrical Equipment, Hebei University of Technology, Tianjin, 300130, China;Shenyang National Laboratory for Materials Science, Institute of Metal Research, Chinese Academy of Sciences, School of Materials Science and Engineering, University of Science and Technology of China, Shenyang, 110016, China;Jihua Laboratory, Foshan, 528251, China
基金项目:supported by the National Natural Science Foundation of China [51971225, 51771202, 51771201];Key Research Program of Frontier Sciences, CAS [QYZDY-SSW-JSC027]。
摘    要:Reactions between basal 〈a60〉 dislocations and {1012} coherent twin boundaries(CTBs) in a Mg alloy were studied with atomic resolution. Individual dislocation-CTB reactions produced steps with residual dislocations and multiple t winnin g dislocations(TDs) gliding away, consequently resulting in TB migration. Reactions between {1012} CTBs and low-angle grain boundaries composed of basal 〈a60〉 dislocations created either basal-prismatic/prismatic-basal interfaces or asymmetric tilt grain boundaries, depending on whether TDs gliding away or not. Not only the emission of TDs by dislocation-TB reactions may drive TB migration, but also the resultant steps or facets along TBs can act as TD sources to facilitate TB migration. Our results indicate that roughness or severe loss of local coherency induced by dislocation-TB reactions does not intrinsically impede TB migration in Mg alloys. Dislocation-TB reactions may provide another feasible strategy to improve the ductility of Mg alloys, in addition to other techniques like grain refinement and texture modification.

关 键 词:Mg  alloys  DISLOCATION  Twin  boundary  Migration  Plastic  deformation

Atomic-resolution studies on reactions between basal dislocations and { 10(1)2 } coherent twin boundaries in a Mg alloy
Huhu Su,Xinzhe Zhou,Shijian Zheng,Hengqiang Ye,Zhiqing Yang.Atomic-resolution studies on reactions between basal dislocations and {1012} coherent twin boundaries in a Mg alloy[J].Journal of Materials Science & Technology,2021,66(7):28-35.
Authors:Huhu Su  Xinzhe Zhou  Shijian Zheng  Hengqiang Ye  Zhiqing Yang
Abstract:Reactions between basal dislocations and { 10(1)2 } coherent twin boundaries (CTBs) in a Mg alloy were studied with atomic resolution.Individual dislocation-CTB reactions produced steps with residual dislocations and multiple twinning dislocations (TDs) gliding away,consequently resulting in TB migration.Reactions between {10(1)2} CTBs and low-angle grain boundaries composed of basal dislocations created either basal-prismatic/prismatic-basal interfaces or asymmetric tilt grain boundaries,depending on whether TDs gliding away or not.Not only the emission of TDs by dislocation-TB reactions may drive TB migration,but also the resultant steps or facets along TBs can act as TD sources to facilitate TB migration.Our results indicate that roughness or severe loss of local coherency induced by dislocation-TB reactions does not intrinsically impede TB migration in Mg alloys.Dislocation-TB reactions may provide another feasible strategy to improve the ductility of Mg alloys,in addition to other techniques like grain refinement and texture modification.
Keywords:Mg alloys  Dislocation  Twin boundary  Migration  Plastic deformation
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