Entropy-stabilized (Hf,Nb,Ta,Ti,Zr)B2 solid solution powders produced by a carbo/boro-thermal reduction fol lowed by solid solution formation were first analysed by synchrotron radiation x-ray diffraction, and their long range periodicity (i.e. lattice parameters) as well as the micro-strain intended as lattice disorder were quanti tatively determined. A model to describe the micro-strain was proposed. The as-synthesized (Hf,Nb,Ta,Ti,Zr)B2 solid solution powders were then hot-pressed at 2200K and 50MPa until near full densification was achieved. The hot-pressed material had a residual micro-porosity of 1.3vol.% and consisted of a (Hf,Nb,Ta,Ti,Zr)B2 ceramic matrix, 0.3-1 μm grain size range, and of a residual 10vol.% B4C particulate component, grain size in the range 0.2-2 μm. B4C was a side product of the former synthesis and, after hot-pressing, remained trapped along the grain boundaries of the primary (Hf,Nb,Ta,Ti,Zr)B2 solid solution ceramic matrix. Micro-hardness HV0.2=22.7 ± 1.9GPa for 1.96N applied force was measured.
Monteverde, F., Saraga, F., Gaboardi, M. (2020). Compositional disorder and sintering of entropy stabilized (Hf,Nb,Ta,Ti,Zr)B2 solid solution powders. JOURNAL OF THE EUROPEAN CERAMIC SOCIETY, 40(12), 3807-3814 [10.1016/j.jeurceramsoc.2020.04.026].
Compositional disorder and sintering of entropy stabilized (Hf,Nb,Ta,Ti,Zr)B2 solid solution powders
Mattia Gaboardi
2020-01-01
Abstract
Entropy-stabilized (Hf,Nb,Ta,Ti,Zr)B2 solid solution powders produced by a carbo/boro-thermal reduction fol lowed by solid solution formation were first analysed by synchrotron radiation x-ray diffraction, and their long range periodicity (i.e. lattice parameters) as well as the micro-strain intended as lattice disorder were quanti tatively determined. A model to describe the micro-strain was proposed. The as-synthesized (Hf,Nb,Ta,Ti,Zr)B2 solid solution powders were then hot-pressed at 2200K and 50MPa until near full densification was achieved. The hot-pressed material had a residual micro-porosity of 1.3vol.% and consisted of a (Hf,Nb,Ta,Ti,Zr)B2 ceramic matrix, 0.3-1 μm grain size range, and of a residual 10vol.% B4C particulate component, grain size in the range 0.2-2 μm. B4C was a side product of the former synthesis and, after hot-pressing, remained trapped along the grain boundaries of the primary (Hf,Nb,Ta,Ti,Zr)B2 solid solution ceramic matrix. Micro-hardness HV0.2=22.7 ± 1.9GPa for 1.96N applied force was measured.File | Dimensione | Formato | |
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