Effect of Shot Peening on the Evolution of Scale on T91 Steel Exposed to Steam

Author:

Xu Liming,He Yinsheng,Kang Yeonkwan,Shin Keesam

Abstract

Shot peening can be an effective solution for the prevention or retardation of scale formation, and subsequent exfoliation, upon exposure of the inner tube to steam in coal-fired power plants. In this study, specimens of T91 tubes were shot peened and then exposed to 1-bar steam for 100–1000 h at 650 °C, and were then analyzed using Vickers hardness test and microscopic techniques OM, SEM, TEM, etc. The analysis indicates that the oxide scales are typically Fe2O3 on the topmost layer, Fe3O4 below, and a FeCr2O4 spinel on the bottom in both shot peening treated and untreated specimens. However, the oxide scale thicknesses of shot peened specimens are thinner, indicating that shot peened specimens have better oxidation resistance. In addition, numerous defects, such as voids and micro-cracks, were found in the untreated specimens, which are believed to cause exfoliation of the uppermost Fe2O3 layers of the specimens exposed to steam for 800 and 1000 h. By contrast, the shot peened specimens maintained a dense contact oxide scale with fewer defects.

Funder

Korea Institute of Energy Technology Evaluation and Planning

National Research Foundation of Korea

Publisher

MDPI AG

Subject

Fluid Flow and Transfer Processes,Computer Science Applications,Process Chemistry and Technology,General Engineering,Instrumentation,General Materials Science

Reference18 articles.

1. Oxidation of alloys in steam environments: A review;Fry,2002

2. Managing Steam-Side Oxidation and Exfoliation in USC Boiler Tubes;Shingledecker;Adv. Mater. Process.,2013

3. Continuous and cyclic oxidation of T91 ferritic steel under steam

4. Evolution of Oxide Film of T91 Steel in Water Vapor Atmosphere at 750 °C

5. Corrosion behavior of ferritic–martensitic steel T91 in supercritical water

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