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Small punch and uniaxial creep fracture behaviours of modified SUS304H steel at various temperatures

Authors
Htun, Nyein Chan ZanThanh Tuan NguyenYoon, Kee BongPark, Jai Hyun
Issue Date
4-Jul-2018
Publisher
TAYLOR & FRANCIS LTD
Keywords
SUS304H; small punch creep test; power law creep constants; Monkman-Grant relation; vanadium; crack
Citation
MATERIALS AT HIGH TEMPERATURES, v.35, no.4, pp 378 - 386
Pages
9
Journal Title
MATERIALS AT HIGH TEMPERATURES
Volume
35
Number
4
Start Page
378
End Page
386
URI
https://scholarworks.bwise.kr/cau/handle/2019.sw.cau/1483
DOI
10.1080/09603409.2017.1361054
ISSN
0960-3409
1878-6413
Abstract
Commercial austenitic stainless steel SUS304H with small amount of vanadium addition was used in this study. Small punch (SP) creep and uniaxial tensile creep tests were conducted at 650, 700, and 750 degrees C to measure creep lives and the minimum displacement rates or the minimum creep strain rates. The measured parameters were compared between the two test methods, seeking empirical relationships among the parameters using Larson-Miller Parameter and Monkman-Grant relation. Magnitude of the applied stress (MPa) in the uniaxial tensile creep test was approximately equal to the applied load value (N) in the SP creep test at all test temperatures. It was shown that during the creep deformation of the SP creep specimen, crack initiation and accompanying crack growth occur simultaneously. Competing failure mechanisms of creep deformation and crack growth may affect the SP creep life and consequently determine the proportionality function, a, in the relation between the SP load and the tensile creep rupture stress in creep tests.
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