Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
7955475 | Calphad | 2015 | 11 Pages |
Abstract
The 150 °C isothermal section of Li-Si-Ni ternary system has been experimentally established. The investigation is based on X-ray powder diffraction and scanning electron microscopy techniques on about 80 ternary alloys, prepared by argon-arc melting of proper elemental ingots. The existence of six ternary compounds, i.e. Ï1(LiNi2Si), Ï2(Li13Ni40Si31), Ï3(LiNi6Si6), Ï4(Li13Ni9Si18), Ï5(Li0.6Ni5.4Si6) and Ï6 (Li75Ni20Si128) is conformed. Fourteen three-phase regions have been detected, i.e. Li13Si4+Ï1+Li22Si5, Li13Si4+Ï1+Ï2, γ+Ï1+Ï2, Li7Si3+Ï4+Ï2, Li7Si3+Ï4+Li12Si7, Ï6+Ï4+Li12Si7, γ+Ï1 +β1, γ+δ+Ï2, Ï3+δ+Ï5, ε+δ+Ï5, NiSi2+(Si)+Ï5, (Si)+Ï5+Ï4, Ï2+Ï3+Ï4 and Ï5+NiSi+NiSi2. Furthermore, thermodynamic description of the Li-Ni and Li-Si-Ni systems is carried out with the CALPHAD approach on the basis of the present experimental results and the first-principle calculation of the formation enthalpies for Ï1 and Ï3 ternary compounds. Reasonable agreement of the phase equilibria in the Li-Si-Ni ternary system between the experiment and thermodynamic calculation is achieved.
Related Topics
Physical Sciences and Engineering
Materials Science
Materials Science (General)
Authors
Zhaohui Long, Chihua Tang, Jing Ding, Jin Gong, Fucheng Yin, Zhanpeng Jin,