Impact Factor1.389
DOI number:10.1080/09603409.2019.1662981
Affiliation of Author(s):西北大学
Journal:MATERIALS AT HIGH TEMPERATURES
Key Words:Heat-resistant steel; creep rupture; hardness; strengthening mechanism; precipitate; damage tolerance factor; fractography; microstructure
Abstract:The creep rupture behaviours and microstructural changes of a modified 9Cr-1Mo heat-resistant steel were investigated at 853 K. Analysis of creep results suggests that dislocation climb is the dominant deformation mechanism with true stress exponent of 5 under the present conditions. Based on the microstructural analysis, strengthening contributions from M23C6 carbides and MX carbonitrides were clarified. The M23C6 carbides can promote grain boundary strengthening by exerting Zener pinning forces, whereas MX carbonitrides can enhance the creep strength by interacting with mobile dislocations to induce threshold stress. Besides, softening of the steel is related not only to the decrease of dislocations, but also the coarsening of precipitates and substructures. The value of creep damage tolerance factor is close to 6.6, which further confirms that the creep damage is mainly attributed to the microstructural degradations, such as the coarsening of precipitates and substructures and decrease of dislocations.
Indexed by:Journal paper
Discipline:Engineering
Volume:36
Issue:6
Page Number:548-561
Translation or Not:no
Date of Publication:2019-11-02
Included Journals:SCI、EI
Supervisor of Master's Candidates
Name (Pinyin):zhulin
Date of Birth:1993-01-16
Date of Employment:2019-12-30
School/Department:化工学院
Education Level:With Certificate of Graduation for Doctorate Study
Gender:Male
Degree:Doctoral Degree in Engineering
Status:Employed
Alma Mater:西北大学
Discipline:Other specialties in Chemical Engineering and Technology
Chemical Process Machinery
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