Modern analytical methods for estimating the phase stability of nickel superalloys

Author:

Belyanchikov L. N.

Publisher

Pleiades Publishing Ltd

Subject

Metals and Alloys

Reference18 articles.

1. Superalloys II: High-Temperature Materials for Aerospace and Industrial Power Plants, Ed. by Ch. T. Sims, N. S. Stoloff, and U. K. Hagel (Metallurgiya, Moscow, 1995).

2. Y. Yang, Q. Zhang, and Zh. Ho, “Precipitation of Gamma Prime Phase of Nickel-Base Superalloy in Electric Field,” in Proceedings of International Conference on Intemetallics and Superalloys, EUROMAT99, Ed. by D. G. Morris, S. Naka, and P. Caron (Wiley, Germany, 2000), Vol. 10, pp. 34–40.

3. G. I. Morozova, “Laws of Formation of the Chemical Composition of γ’/γ Matrices in Multicomponent Nickel Alloys,” Dokl. Akad. Nauk SSSR 320 (6), 1413–1416 (1991).

4. E. N. Kablov, A. N. Samoilov, G. I. Morozova, and N. V. Petrushin, “Calculated Correction of the Composition of Phase-Stable Complexly Alloyed Nickel Superalloys, in Aviation Materials and Technologies. Methods of Testing of Quality Control of Metallic and Nonmetallic Materials (VIAM, Moscow, 2001), pp. 16–24.

5. H. Harada, M. Yamazaki, Y. Kuizumi, et al., “Alloys Design for Nickel-Base Superalloys,” in Proceedings of Conference on High Temperature Alloys for Gas Turbines and Other Application, Liege, Belgium (1982), pp. 721–735.

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