首页 | 本学科首页   官方微博 | 高级检索  
     检索      

Grain boundary segregation and relaxation in nano-grained polycrystalline alloys
作者姓名:Tong-Yi Zhang  Ying-Xin Gao  Sheng Sun
作者单位:Materials Genome Institute
基金项目:supported by the National Key R&D Program of China(Grant No.2017YFB0701604);the National Natural Science Foundation of China(Grant No.11672168)for financial support。
摘    要:The present study carries out systematic thermodynamics analysis of Grain Boundary(GB)segregation and relaxation in NanoGrained(NG)polycrystalline alloys.GB segregation and relaxation is an internal process towards thermodynamic equilibrium,which occurs naturally in NG alloys without any applied loads,causes deformation and generates internal stresses.The analysis comprehensively investigates the multiple coupling effects among chemical concentrations and mechanical stresses in GBs and grains.A hybrid approach of eigenstress and eigenstrain is developed herein to solve the multiple coupling problem.The analysis results indicate that the GB stress and grain stress induced by GB segregation and relaxation can be extremely high in NG alloys,reaching the GPa level,which play an important role in the thermal stability of NG alloys,especially via the coupling terms between stress and concentration.The present theoretic analysis proposes a novel criterion of thermal stability for NG alloys,which is determined by the difference in molar free energy between a NG alloy and its reference single crystal with the same nominal chemical composition.If the difference at a temperature is negative or zero,the NG alloy is thermal stable at that temperature,otherwise unstable.

关 键 词:nano-grained  alloys  thermal  stability  grain  boundary  segregation  eigenstress  EIGENSTRAIN

Grain boundary segregation and relaxation in nano-grained polycrystalline alloys
Tong-Yi Zhang,Ying-Xin Gao,Sheng Sun.Grain boundary segregation and relaxation in nano-grained polycrystalline alloys[J].Science China Physics, Mechanics and Astronomy,2021(2).
Abstract:The present study carries out systematic thermodynamics analysis of Grain Boundary(GB) segregation and relaxation in NanoGrained(NG) polycrystalline alloys. GB segregation and relaxation is an internal process towards thermodynamic equilibrium,which occurs naturally in NG alloys without any applied loads, causes deformation and generates internal stresses. The analysis comprehensively investigates the multiple coupling effects among chemical concentrations and mechanical stresses in GBs and grains. A hybrid approach of eigenstress and eigenstrain is developed herein to solve the multiple coupling problem. The analysis results indicate that the GB stress and grain stress induced by GB segregation and relaxation can be extremely high in NG alloys,reaching the GPa level, which play an important role in the thermal stability of NG alloys, especially via the coupling terms between stress and concentration. The present theoretic analysis proposes a novel criterion of thermal stability for NG alloys,which is determined by the difference in molar free energy between a NG alloy and its reference single crystal with the same nominal chemical composition. If the difference at a temperature is negative or zero, the NG alloy is thermal stable at that temperature, otherwise unstable.
Keywords:
本文献已被 CNKI 维普 等数据库收录!
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号