CERESResearch Repository

A microscopy study of nickel-based superalloys performance in type I hot corrosion conditions

Loading...
Thumbnail Image

Date published

Free to read from

2023-03-29

Supervisor/s

Industry supervisor/s

Journal Title

Journal ISSN

Volume Title

Department

Course name

ISSN

0960-3409

Format

Citation

Waeytens M, Syed AU, Roberts T, et al., (2023) A microscopy study of nickel-based superalloys performance in type I hot corrosion conditions. Materials at High Temperatures, Volume 40, Issue 4, pp. 272-282

Abstract

Alloy material selection for sustainable, efficient, and cost-effective use in components is a key requirement for both power generation and aerospace sectors. Superalloys are manufactured using a combination of different elements, selected carefully to balance mechanical performance and environmental resistance to be used in a variety of different service conditions. Therefore, a fundamental understanding of each element is critical to alloy design. In this paper, the interaction of alloy chemistry, particularly chromium as a corrosion-resistant element along with titanium and molybdenum, and their effect on alloys performance for the relevant gas turbine industries were discussed. Based on the findings, the single-crystal alloy is found to be a better corrosion resistant alloy exhibited higher corrosion resistance in comparison to polycrystal alloys and proved that microstructure has a significant impact on alloy performance. This study also established that molybdenum level in chromia former alloys can significantly enhance the corrosion damage.

Description

Software description

Software language

Git repository

Keywords

type I hot corrosion, nickel alloy, chromium, corrosion resistance, scanning electron microscope, energy dispersive X-ray

DOI

Rights

Attribution 4.0 International

Funder/s

Grant number

Relationships

Relationships

Resources