In this work, the intermetallic compound Ni[3]Al was obtained by high-temperature synthesis under pressure at various values of the preliminary pressure on the initial powder mixture (3Ni+Al). The study of pressure-time and displacement-time diagrams gave a coherent picture of the synthesis passage over time. It was found that an increase of preliminary pressure leads to a decreasing of the powder compacts porosity. In this regard, the smallest displacement of the press plunger after initiating the synthesis reaction in the powder compact was observed at the highest value of the preliminary pressure on the compact. The role of preliminary pressure on the initial powder mixture in the process of the grain structure formation of the Ni[3]Al i...
In the present paper, the trace B doped Ni3Al alloy was prepared by the thermal explosion and hot ex...
The Ni3Al/Al2O3 composite was fabricated by self-propagation high-temperature synthesis with and wit...
17 USC 105 interim-entered record; under review.The article of record as published may be found at h...
The impact of the preliminary load on 3Ni+Al powder mixture and the impact of the duration of the de...
The paper represents experimental findings both in the area of effects of nanoparticles of inert hig...
Two-phase (B2 + L1(2)) nickel aluminide intermetallic compounds were synthesized by the pressure-ass...
Abstract. The paper describes the preparation of Ni3A1 intermetallic compounds, and investigations o...
International audienceThe present study deals with synthesizing the NiAl compound through the therma...
The effect of the deformation process of the high-temperature synthesis product on the formation of ...
The paper describes the preparation of Ni3Al-based intermetallic compounds and investigations of the...
The paper describes the preparation of Ni3Al intermetallic compounds, and investigations of their st...
Ni and Al elemental powder mixtures with composition Ni75Al25 (at ) were mechanically alloyed in a p...
Shock compression of metal powders can cause good interparticle bonding and phase transformations. S...
In this study, aluminum powder with 15 mu m size and carbonyl-nickel powder with 4-7 mu m size havin...
Several Al–Ni alloys containing 20 to 80 at% nickel are produced from a mixture of aluminum and nick...
In the present paper, the trace B doped Ni3Al alloy was prepared by the thermal explosion and hot ex...
The Ni3Al/Al2O3 composite was fabricated by self-propagation high-temperature synthesis with and wit...
17 USC 105 interim-entered record; under review.The article of record as published may be found at h...
The impact of the preliminary load on 3Ni+Al powder mixture and the impact of the duration of the de...
The paper represents experimental findings both in the area of effects of nanoparticles of inert hig...
Two-phase (B2 + L1(2)) nickel aluminide intermetallic compounds were synthesized by the pressure-ass...
Abstract. The paper describes the preparation of Ni3A1 intermetallic compounds, and investigations o...
International audienceThe present study deals with synthesizing the NiAl compound through the therma...
The effect of the deformation process of the high-temperature synthesis product on the formation of ...
The paper describes the preparation of Ni3Al-based intermetallic compounds and investigations of the...
The paper describes the preparation of Ni3Al intermetallic compounds, and investigations of their st...
Ni and Al elemental powder mixtures with composition Ni75Al25 (at ) were mechanically alloyed in a p...
Shock compression of metal powders can cause good interparticle bonding and phase transformations. S...
In this study, aluminum powder with 15 mu m size and carbonyl-nickel powder with 4-7 mu m size havin...
Several Al–Ni alloys containing 20 to 80 at% nickel are produced from a mixture of aluminum and nick...
In the present paper, the trace B doped Ni3Al alloy was prepared by the thermal explosion and hot ex...
The Ni3Al/Al2O3 composite was fabricated by self-propagation high-temperature synthesis with and wit...
17 USC 105 interim-entered record; under review.The article of record as published may be found at h...