Preparation, Structure, and Properties of Ni3Al and NiAl Light Powder Alloys for Aerospace

Author:

Povarova K.B.1,Skachkov O.A.2

Affiliation:

1. Russian Academy of Science

2. Bardin Scientific-Technical Centre of Materials and Technology

Abstract

New light super-heat-resistant powder Ni3Al and NiAl-based alloys (of the Ni-Al-Mo-B, Ni-Al-Fe-La, and Ni-Al-Y2O3 systems), as well as a new technology for preparing and processing them have been developed. The density of the alloys was 7.3-7.5 and ~6 g/cm 3, respectively. The Ni3Al sheets were used to prepare shields for combustion chambers in gas-turbine engines by roomtemperature deformation; the shields are intended for the long-term operation at 1100-1200°C and for the short-term use at 1300°C. The activated NiAl powders alloyed with Fe+La were used to produce sintered complex-shape articles, such as combustion stabilizers in a jet unit of combustion chamber of the gas-turbine installation, heat sources, etc. capable of operating at t≤1500°C under low mechanical stresses. At 1100, 1300, and 1500°C, the 100-h strength of the heat-resistant NiAl- (2-7.5) vol. % Y2O3 alloys subjected to directional recrystallization is 70, 35 and ≥10 MPa, respectively. The vanes, in which the length of recrystallized grain is smaller than the vane length by a factor of 1.5-2, were manufactured from these alloys.

Publisher

Trans Tech Publications, Ltd.

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science

Reference5 articles.

1. Kablov E.I., Buntushkin V.P., Povarova K.B., et al., Low-alloy light high-temperature materials based on Ni3Al intermetallic compound, Metally, 1999, no. 1. pp.58-65.

2. Intermetallic Alloy Development:. A Program Evaluation. ORNL. (1997).

3. Dzneladze Zh.I., Shchegoleva R.P., et al. Powder metallurgy of steels and alloys, Moscow: Metallurgiya, 1978, p.264.

4. Manegin Yu.V., Skachkov O.A., Ternovoi Yu.F., Matorina O.V., Investigation of the effect of powder preparation methods on the structure and properties of NiAl intermetallic compound, International conference Newest processes and materials in powder metallurgy, Kiev 1997, p.80.

5. Arzt E, Grahle P High temperature creep behavior of oxide dispersion strengthened NiAl intermetallics, Acta Mater, 1998, vol. 46., no. 8, pp.2717-2728.

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