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  1. No Access

    Article

    Experimental Investigation of Phase Equilibria in Zr-Ni-Pt System

    Phase equilibria in Zr-Ni-Pt ternary system have been experimentally determined through diffusion triple and alloy sampling approaches. Based on the results of Electron Probe Microanalysis (EPMA) and x-ray dif...

    J. Lu, X. M. Huang, K. Hu, H. S. Liu in Journal of Phase Equilibria and Diffusion (2018)

  2. No Access

    Article

    Experimental Investigation of Phase Equilibria in Ti–Zr–Ge System

    Phase equilibria in the Ti–Zr–Ge ternary system at 1073 and 1173 K were investigated experimentally using equilibrated alloys with electron probe microanalysis and x-ray diffraction analysis. No ternary compou...

    J. S. Liu, X. M. Huang, J. L. Liu, H. S. Liu in Journal of Phase Equilibria and Diffusion (2018)

  3. No Access

    Article

    Experimental Investigation of Phase Equilibria in the Cu-Co-Zr System

    Through alloy sampling approach, phase equilibria in the Cu-Co-Zr ternary system have been determined. Based on the phases identified with electron probe microanalysis and x-ray diffraction, isothermal section...

    K. L. Lv, Z. Y. **e, H. S. Liu, G. M. Cai in Journal of Phase Equilibria and Diffusion (2017)

  4. No Access

    Article

    Experimental Study on Phase Equilibria in Ti-Cu-Pt System

    Phase relations in Ti-Cu-Pt ternary system have been studied through diffusion- triple technique combined with alloy sampling. Assisted with Electron Probe Microanalysis (EPMA) and x-ray diffraction (XRD) tech...

    Y. Zhong, H. S. Liu, G. M. Cai, Z. P. ** in Journal of Phase Equilibria and Diffusion (2017)

  5. No Access

    Article

    Quenching and Partitioning of Ultrahigh Carbon (1.69 Mass% C) Steel

    Quenching and partitioning (Q&P) or quenching and tempering (Q&T) process of modified ultrahigh carbon steel (UHCS, Fe–1.69C–1.38Si–1.84Mn–2.20Cr–0.54Mo–0.43Ni wt%) was investigated by means of scanning electr...

    Y. H. Luo, H. S. Liu, Z. P. **, F. Zheng in Metallography, Microstructure, and Analysis (2016)

  6. No Access

    Article

    Isothermal Sections of Ti-Mn-Zr Ternary System at 1020 and 800 °C

    Phase relations of Ti-Mn-Zr ternary system at 1020 and 800 °C have been investigated mainly by metallographic observations, x-ray diffraction and electron microprobe analysis.A new ternary compound named K was...

    Y. Wu, Z. Y. **e, H. S. Liu, Z. P. ** in Journal of Phase Equilibria and Diffusion (2015)

  7. Article

    Isothermal Sections of Al-Ni-Zr Ternary System at 850 and 1050 °C

    Phase relations of Al-Ni-Zr ternary system were investigated with more than 60 ternary alloy compositions combining with x-ray diffraction, scanning electron microscopy equipped with energy dispersive spectros...

    Q. Chen, L. H. Huang, H. S. Liu, F. Zheng in Journal of Phase Equilibria and Diffusion (2013)

  8. No Access

    Article

    Assessment of the Atomic Mobilities in fcc Cu-Fe and Cu-Ti Alloys

    The experimentally measured diffusion coefficients of fcc Cu-Fe and Cu-Ti alloys in the published literature were reviewed critically in the present work. On the basis of the available thermodynamic informatio...

    J. Wang, C. Leinenbach, L. B. Liu, H. S. Liu in Journal of Phase Equilibria and Diffusion (2011)

  9. No Access

    Article

    Diffusion and Atomic Mobilities in fcc Ni-Sn Alloys

    The composition-distance profiles in face-centered cubic (fcc) Ni-Sn alloys at 1173, 1223, 1273, and 1323 K were measured by means of electronic probe microanalysis (EPMA) using Ni/Ni-7.3at.%Sn diffusion coupl...

    J. Wang, C. Leinenbach, H. S. Liu, L. B. Liu in Journal of Phase Equilibria and Diffusion (2010)

  10. Article

    Open Access

    First-Principle Calculation Assisted Thermodynamic Assessment of the Pt-Pb System

    Thermodynamic assessment of the Pt-Pb binary system has been performed by combining first-principle calculations with the CALPHAD method. The formation enthalpies of the Pt3Pb and PtPb4 were calculated by using t...

    Z. H. Long, X. M. Tao, H. S. Liu, Z. P. ** in Journal of Phase Equilibria and Diffusion (2009)