Experimental study of the phase diagram of the La-Ni-Sn system at 300 and 600 °C
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The phase equilibria of the ternary La-Ni-Sn system have been experimentally studied at temperatures of 300 and 600°C using long-term annealed samples. The coexisting phases were characterized by scanning electron microscopy SEM and powder X-ray diffraction XRD. The phase transformation temperatures were analyzed using thermal analysis DTA or DSC methods. The LaNi5 phase, which is known as a hydrogen storage material, was observed to have up to 10% tin solubility at 600°C. At a temperature of 300°C, there is a region of miscibility gap between 1.9-6.5 at.% Sn which is no longer present at 600°C. Twelve ternary intermetallic phases were found at 300°C and eleven ternary intermetallic phases at 600°C. None of them showed a noticeable homogeneity range. Based on the experimental data obtained, isothermal sections of the La-Ni-Sn phase diagram were constructed at 300 and 600°C.



