Ageing effect on the creep performance of simulated weld HAZ for the steels X20 and P91

Changes in size- and spatial distribution of precipitates and their effect on stationary creep rate of two grades of creep-resistant 9-12% Cr steels, X20 and P91, as a function of ageing at two different conditions were investigated. Ageing of both steels was performed at 650°C lasting up to 2 years...

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Main Authors: Kafexhiu Fevzi, Podgornik Bojan, Vodopivec Franc
Format: Article
Language:English
Published: EDP Sciences 2018-01-01
Series:MATEC Web of Conferences
Online Access:https://doi.org/10.1051/matecconf/201818803004
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spelling doaj-812b7d19a47f47a8a6eccb8b305e627a2021-02-02T04:40:41ZengEDP SciencesMATEC Web of Conferences2261-236X2018-01-011880300410.1051/matecconf/201818803004matecconf_iceaf-v2018_03004Ageing effect on the creep performance of simulated weld HAZ for the steels X20 and P91Kafexhiu FevziPodgornik BojanVodopivec FrancChanges in size- and spatial distribution of precipitates and their effect on stationary creep rate of two grades of creep-resistant 9-12% Cr steels, X20 and P91, as a function of ageing at two different conditions were investigated. Ageing of both steels was performed at 650°C lasting up to 2 years and at 750°C lasting up to 6 months. Prior to the ageing, simulation of two weld heat-affected zone HAZ regions, i.e., coarsegrained microstructure (γ), and grain-refined microstructure (α+γ) was performed. Accelerated creep tests at 580°C and 170 MPa, lasting up to 100 hours were performed on the above microstructures prior to- and after the ageing. In addition, optical and SEM imaging were performed on metallographic specimens, followed by image analysis. Deterioration of the creep performance show a proportional behaviour with the precipitate coarsening, which is more pronounced after the ageing at 750°C. Comparatively, the increase of the stationary creep rate after the ageing at 650°C was more pronounced in the steel X20 than in the P91. In both steels and both tempering temperatures, the most troublesome region with respect to the creep behaviour was observed to be the simulated intercritical (α+γ) HAZ microstructure.https://doi.org/10.1051/matecconf/201818803004
collection DOAJ
language English
format Article
sources DOAJ
author Kafexhiu Fevzi
Podgornik Bojan
Vodopivec Franc
spellingShingle Kafexhiu Fevzi
Podgornik Bojan
Vodopivec Franc
Ageing effect on the creep performance of simulated weld HAZ for the steels X20 and P91
MATEC Web of Conferences
author_facet Kafexhiu Fevzi
Podgornik Bojan
Vodopivec Franc
author_sort Kafexhiu Fevzi
title Ageing effect on the creep performance of simulated weld HAZ for the steels X20 and P91
title_short Ageing effect on the creep performance of simulated weld HAZ for the steels X20 and P91
title_full Ageing effect on the creep performance of simulated weld HAZ for the steels X20 and P91
title_fullStr Ageing effect on the creep performance of simulated weld HAZ for the steels X20 and P91
title_full_unstemmed Ageing effect on the creep performance of simulated weld HAZ for the steels X20 and P91
title_sort ageing effect on the creep performance of simulated weld haz for the steels x20 and p91
publisher EDP Sciences
series MATEC Web of Conferences
issn 2261-236X
publishDate 2018-01-01
description Changes in size- and spatial distribution of precipitates and their effect on stationary creep rate of two grades of creep-resistant 9-12% Cr steels, X20 and P91, as a function of ageing at two different conditions were investigated. Ageing of both steels was performed at 650°C lasting up to 2 years and at 750°C lasting up to 6 months. Prior to the ageing, simulation of two weld heat-affected zone HAZ regions, i.e., coarsegrained microstructure (γ), and grain-refined microstructure (α+γ) was performed. Accelerated creep tests at 580°C and 170 MPa, lasting up to 100 hours were performed on the above microstructures prior to- and after the ageing. In addition, optical and SEM imaging were performed on metallographic specimens, followed by image analysis. Deterioration of the creep performance show a proportional behaviour with the precipitate coarsening, which is more pronounced after the ageing at 750°C. Comparatively, the increase of the stationary creep rate after the ageing at 650°C was more pronounced in the steel X20 than in the P91. In both steels and both tempering temperatures, the most troublesome region with respect to the creep behaviour was observed to be the simulated intercritical (α+γ) HAZ microstructure.
url https://doi.org/10.1051/matecconf/201818803004
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