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Effects of tungsten and molybdenum on high-temperature tensile properties of five heat-resistant austenitic stainless steels SCIE SCOPUS

Title
Effects of tungsten and molybdenum on high-temperature tensile properties of five heat-resistant austenitic stainless steels
Authors
Seungmun JungChangwoo JeonYong Hee JoWon-Mi ChoiLee, BJYong-Jun OhSeongsik JangLee, S
Date Issued
2016-02-22
Publisher
ELSEVIER
Abstract
Heat-resistant austenitic stainless steels have been intensively used worldwide for turbo-chargers requiring excellent high-temperature properties to sustain their structures at very high exhaust gas temperatures. Five heat-resistant austenitic stainless steels were fabricated by varying contents of W and Mo, and their high-temperature tensile properties were investigated by analyzing phases (liquid, austenite, ferrite, and carbides) existing at high temperatures. Effects of replacement of expensive alloying element, W, by Mo or reduction in W were also examined. The increase in contents of W and Mo resulted in linearly increased volume fractions of M7C3 and total carbides, while the volume fraction of MC carbide hardly showed any relation, and showed a good correspondence with high-temperature yield and tensile strengths. The steel where 2 wt% of W was replaced by 2 wt% of Mo showed the best 900 degrees C-tensile properties, thereby confirming the successful achievement of partly replacement of W by Mo. In addition, the low-W-containing steels showed excellent 900 degrees C-tensile properties, which also indicated that the reduction in 1-2 wt% of W was accepted for saving costs of alloying elements. (C) 2016 Elsevier B.V. All rights reserved.
URI
https://oasis.postech.ac.kr/handle/2014.oak/107681
DOI
10.1016/J.MSEA.2016.01.022
ISSN
0921-5093
Article Type
Article
Citation
Materials Science and Engineering A, vol. 656, page. 190 - 199, 2016-02-22
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이성학LEE, SUNG HAK
Dept of Materials Science & Enginrg
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