Effects of aging and nitridation on microstructure and mechanical properties of austenitic stainless steel

Author:

Young Alice M.ORCID,Kral Milo V.,Bishop Catherine M.

Abstract

AbstractUnderstanding the effects of in-service microstructural changes in metal alloys on the mechanical performance and remaining life of equipment is a critical part of integrity management in industrial plants. However, the effects of processes such as carburization or nitridation are not accounted for in industry-standard life assessment methodologies such as those provided in the API 579-1/ASME FFS-1: Fitness-For-Service standard. This is problematic for the austenitic stainless steel Alloy 800H, which typically operates in the creep regime and has been reported to suffer nitriding during high-temperature service in air. Despite this being one of the most common service environments for 800H, the impact of nitriding on in-service performance and implications for remaining life assessment have not been well-studied for this alloy. In this work, we characterize the microstructures of as-received, aged, and nitrided Alloy 800H tube material, and correlate observations with room-temperature tensile properties and high-temperature creep behavior. We show that while the creep properties of aged 800H material can be captured by the widely-used MPC Project Omega creep model and API 579-1 Omega properties for 800H, nitrided material properties fall outside of the expected bounds, and therefore remaining life cannot be reliably predicted using this method without experimental data.

Funder

Methanex Corporation

University of Canterbury

Publisher

Springer Science and Business Media LLC

Subject

Mechanical Engineering,Mechanics of Materials,General Materials Science

Reference58 articles.

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2. American Petroleum Institute (2015) API Standard 530: Calculation of heater-tube thickness in petroleum refineries

3. Thomas C, Anderson T, Hill T, Anderson T (2011) Paper No. 11155: Life assessment of reformer tubes from strain measurement. In: Corrosion 2011. NACE International, Houston, pp 1–18

4. Special Metals Corporation (2004) Incoloy Alloy 800H & 800HT. http://www.specialmetals.com/assets/smc/documents/alloys/incoloy/incoloy-alloys-800h-800ht.pdf. Accessed 24 Feb 2017

5. VDM Metals (2020) VDM Alloy 800 H/HP. https://www.vdm-metals.com/fileadmin/user_upload/Downloads/Data_Sheets/Data_Sheet_VDM_Alloy_800_H_HP.pdf. Accessed 27 Mar 2022

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