X-Ray Analysis of the Precipitation Process in an Fe-Ni Superalloy

Author:

Pająk Lucjan1,Ducki Kazimierz J.2,Wojtynek Lilianna2

Affiliation:

1. University of Silesia

2. Silesian University of Technology

Abstract

The influence of prolonged ageing on the kinetics of the precipitation process of the secondary phases in an A-286 type Fe-Ni superalloy has been studied. The samples were subjected to a solution heat treatment at 980°C for 2 h and water quenched, and then aged at temperatures of 715, 750 and 780°C at holding times from 0.5 to 500 h. Structural investigations were conducted using X-ray diffraction methods. The values of the austenite lattice constant were estimated with the use of the cos2θ extrapolation function, and by the Toraya (WPPF) and Rietveld methods. It was found that the largest decrease in the austenite lattice constant took place during the initial period of ageing at all investigated temperatures, which corresponds to the spinodal decomposition of supersaturated austenite and formation of the γ'-Ni3(Al,Ti) intermetallic phase. Good agreement between the values of the austenite lattice constant determined using the extrapolation function and the Rietveld method was found.

Publisher

Trans Tech Publications, Ltd.

Subject

Condensed Matter Physics,General Materials Science,Atomic and Molecular Physics, and Optics

Reference6 articles.

1. K.J. Ducki, Research of the microstructure and precipitation strengthening in a high-temperature Fe-Ni superalloy, IOP Conference Series - Materials Science and Engineering 35 (2012) 012007.

2. F.B. Pickering, Some aspects of the precipitation of nickel-aluminium-titanium intermetallic compounds in ferrous materials, Proc. Conference: The Metallurgical Evolution of Stainless Steels, The Metals Society, London (1979) 391-401.

3. F.G. Wilson, Age hardening of austenitic steels by γ', In: Efect of second-phase particles on the mechanical properties of steels, The Iron and Steel Instytute, London (1971) 16-21.

4. H. Toraya, Whole-powder-pattern fitting without reference to a structural model: application to X-ray powder diffraction data, J. Appl. Cryst. 19 (1986) 440-447.

5. H.M. Rietveld, A profile refinement method for nuclear and magnetic structures, J. Appl. Cryst. 2 (1969) 65-71.

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