Chinese Journal of Computational Physics ›› 2023, Vol. 40 ›› Issue (3): 369-375.DOI: 10.19596/j.cnki.1001-246x.8590

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First-Principles Study on Elastic Properties and Electronic Structure of Ag-based Alloys

Jia HU1(), Zhou YI1,2,3,*(), Dadong WEN1, Yonghe DENG1, Yun XIE2, Shuangxiang QI2, Jianmei QIU2, Zhengyi LI2, Ping PENG3   

  1. 1. School of Computational Science & Electronics, Hunan Institute of Engineering, Xiangtan, Hunan 411104, China
    2. Ningbo Dongda Shenle Electric Alloy Co.Ltd., Ningbo, Zhejiang 300202, China
    3. School of Materials Science and Engineering, Hunan University, Changsha, Hunan 410082, China
  • Received:2022-07-12 Online:2023-05-25 Published:2023-07-22
  • Contact: Zhou YI

Abstract:

Based on the first principles, the physical parameters such as point defect formation enthalpy H, elastic constants C11, C12, C44, bulk modulus B, shear modulus G, Young's modulus E and Poisson's ratio γ that characterize the strength and toughness of materials in Ag-based alloys doped with alloying elements such as Cu, Zr, W, Cr, Sn, Ni, In, Zn, Ir were calculated in this paper. The difficulty of doping different alloy atoms in Ag matrix and the effects of the valence electron difference ΔV between the alloy atom and the Ag atom on the elastic properties of the Ag-based alloy were analyzed. With the increase of the ΔV, the ability of Ag-based alloys to resist plastic deformation, shear deformation and maintain crystal structure stability during shear deformation can be enhanced. Furthermore, differential charge density of Ag-based alloy projected on the {1 0 0} plane shows the spatial distribution of charge transfer before and after bonding. It is found that the enhanced elastic properties of Ag-base alloy can be attributed to the strong bonding between the alloy atom and Ag atom.

Key words: Ag-based alloys, first principles, elastic properties, differential charge density