Long-Exposure Air and Steam Oxidation Characteristics of IN 617 Alloys

Author:

Karthikeyan Rishikesh1,Seshadri Satyanaryanan1ORCID,Sarma V Subramanya2,Kamaraj M2

Affiliation:

1. Department of Applied Mechanics, IIT Madras, Chennai 600036, India

2. Department of Materials and Metallurgical Engineering, IIT Madras, Chennai 600036, India

Abstract

India’s growing power demands and emission norms require more efficient coal-based power plants. The shifting of power plants from subcritical to ultra-supercritical (USC) steam conditions could improve efficiency by 12% and reduce CO2 emissions by 35%. There is a need to develop and qualify materials under ultra-supercritical steam conditions with high temperatures and high pressures in laboratory scale. The sample materials were exposed to high temperatures of 700 °C under air and high pressure steam at 700 °C/243 bars for 1000 h in as-received and grain-boundary-enhanced conditions. Grain boundary enhancement included optimization of a thermo-mechanical process involving cold rolling and annealing of samples. The effect of air and steam oxidation on IN 617, a nickel-based candidate superalloy, was analysed. Steam oxidation was performed on a custom-built PARR 4650 series autoclave, and the oxidized samples were characterised under scanning electron microscopy, to evaluate the oxide scales. The grain-boundary-engineered material performed better than the as-received samples. IN 617 overall fared better under both air and steam conditions, with far less weight gains.

Funder

ARCI

Publisher

MDPI AG

Subject

General Medicine

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4. Ghosh, N., and D’souza, R. (2022, September 28). Why 2070 Is Justified as the Net-Zero Deadline Year for India. Available online: https://policycommons.net/artifacts/1900130/why-2070-is-justified-as-the-net-zero-deadline-year-for-india/2651297/.

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