Stress Corrosion Cracking Behavior of TP 439 and 690 TT under Film-Forming Amine Environment

Film-forming amines have been widely used in thermal power plants for maintenance after shutdown, and there are more and more applications and researches in nuclear power secondary circuits for this purpose. However, in the direction of stress corrosion cracking, there is not much research on the in...

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Main Authors: Lu Jundong, Jiang Xiaobin, Sun Ke, Liu Bin, Li Xinmin, Ni Qinwen
Format: Article
Language:English
Published: Hindawi-Wiley 2021-01-01
Series:Scanning
Online Access:http://dx.doi.org/10.1155/2021/6668537
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spelling doaj-b516e2bf93d44b048387c8306e68848e2021-06-21T02:24:55ZengHindawi-WileyScanning1932-87452021-01-01202110.1155/2021/6668537Stress Corrosion Cracking Behavior of TP 439 and 690 TT under Film-Forming Amine EnvironmentLu Jundong0Jiang Xiaobin1Sun Ke2Liu Bin3Li Xinmin4Ni Qinwen5Suzhou Nuclear Power Research InstituteSuzhou Nuclear Power Research InstituteGuangdong Nuclear Power Joint Venture Co.Suzhou Nuclear Power Research InstituteSuzhou Nuclear Power Research InstituteSuzhou Nuclear Power Research InstituteFilm-forming amines have been widely used in thermal power plants for maintenance after shutdown, and there are more and more applications and researches in nuclear power secondary circuits for this purpose. However, in the direction of stress corrosion cracking, there is not much research on the influence of film-forming amines on metal materials. This article uses the high temperature slow strain rate test (SSRT) method to evaluate the influence of a commercial film-forming amine on the stress corrosion cracking behavior of two conventional island materials for PWR nuclear power plants. These two metal materials are the heat exchange tube materials of the high-pressure heater and steam generator in the high-temperature operation area of the secondary circuit of a nuclear power plant: TP 439 stainless steel and 690 TT alloy. The test analyzed the mechanical properties and fracture morphology. The test results show that in the test concentration range (<5 mg/kg), the film-forming amine will not affect the SCC of TP 439 stainless steel and 690 TT alloy under the condition of slow strain rate. The behavior has a significant impact. In practical applications, the general dosage of film-forming amine is 1-2 mg/kg. This data is lower than the film-forming amine concentration used in the experiment. Therefore, there is no need to worry about the obvious impact on the SCC behavior of TP 439 stainless steel and 690 TT alloy.http://dx.doi.org/10.1155/2021/6668537
collection DOAJ
language English
format Article
sources DOAJ
author Lu Jundong
Jiang Xiaobin
Sun Ke
Liu Bin
Li Xinmin
Ni Qinwen
spellingShingle Lu Jundong
Jiang Xiaobin
Sun Ke
Liu Bin
Li Xinmin
Ni Qinwen
Stress Corrosion Cracking Behavior of TP 439 and 690 TT under Film-Forming Amine Environment
Scanning
author_facet Lu Jundong
Jiang Xiaobin
Sun Ke
Liu Bin
Li Xinmin
Ni Qinwen
author_sort Lu Jundong
title Stress Corrosion Cracking Behavior of TP 439 and 690 TT under Film-Forming Amine Environment
title_short Stress Corrosion Cracking Behavior of TP 439 and 690 TT under Film-Forming Amine Environment
title_full Stress Corrosion Cracking Behavior of TP 439 and 690 TT under Film-Forming Amine Environment
title_fullStr Stress Corrosion Cracking Behavior of TP 439 and 690 TT under Film-Forming Amine Environment
title_full_unstemmed Stress Corrosion Cracking Behavior of TP 439 and 690 TT under Film-Forming Amine Environment
title_sort stress corrosion cracking behavior of tp 439 and 690 tt under film-forming amine environment
publisher Hindawi-Wiley
series Scanning
issn 1932-8745
publishDate 2021-01-01
description Film-forming amines have been widely used in thermal power plants for maintenance after shutdown, and there are more and more applications and researches in nuclear power secondary circuits for this purpose. However, in the direction of stress corrosion cracking, there is not much research on the influence of film-forming amines on metal materials. This article uses the high temperature slow strain rate test (SSRT) method to evaluate the influence of a commercial film-forming amine on the stress corrosion cracking behavior of two conventional island materials for PWR nuclear power plants. These two metal materials are the heat exchange tube materials of the high-pressure heater and steam generator in the high-temperature operation area of the secondary circuit of a nuclear power plant: TP 439 stainless steel and 690 TT alloy. The test analyzed the mechanical properties and fracture morphology. The test results show that in the test concentration range (<5 mg/kg), the film-forming amine will not affect the SCC of TP 439 stainless steel and 690 TT alloy under the condition of slow strain rate. The behavior has a significant impact. In practical applications, the general dosage of film-forming amine is 1-2 mg/kg. This data is lower than the film-forming amine concentration used in the experiment. Therefore, there is no need to worry about the obvious impact on the SCC behavior of TP 439 stainless steel and 690 TT alloy.
url http://dx.doi.org/10.1155/2021/6668537
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AT liubin stresscorrosioncrackingbehavioroftp439and690ttunderfilmformingamineenvironment
AT lixinmin stresscorrosioncrackingbehavioroftp439and690ttunderfilmformingamineenvironment
AT niqinwen stresscorrosioncrackingbehavioroftp439and690ttunderfilmformingamineenvironment
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