Effects of δ-ferrite and welding structure on high-cycle fatigue properties of austenitic stainless steels weld metals

被引:0
作者
Yuri, T [1 ]
Ogata, T [1 ]
Saito, M [1 ]
Hirayama, Y [1 ]
机构
[1] Natl Inst Mat Sci, Tsukuba, Ibaraki 3050047, Japan
来源
ADVANCES IN CRYOGENIC ENGINEERING, VOLS 48A AND B | 2002年 / 614卷
关键词
D O I
暂无
中图分类号
O414.1 [热力学];
学科分类号
摘要
We studied the effects of delta-ferrite and welding structure on high-cycle fatigue properties for austenitic stainless steel weld metals at cryogenic temperatures. SUS304L and SUS316L weld metals contained 0% delta-ferrite (0% material) and 10% delta-ferrite (10% material) were prepared. High-cycle fatigue tests were carried out at 293, 77 and 4 K. The S-N curves of those weld metals shifted towards higher stress levels, i.e., the longer life side, with decreasing test temperature. The ratios of 10(6)-cycles fatigue strength (FS) to tensile strength (TS) of 0% material decreased from 0.8 to 0.45 and those of 10% material decreased between 0.35 to 0.65 with decreasing test temperature. Fatigue crack initiation sites of SUS304L 10% material were almost at blowholes, and those of SUS316L 10% material were at weld pass interface boundaries. On the other hand, those of 0% materials were considered to be due to the interface of the solidification structure. Although 6 ferrite reduces toughness at cryogenic temperatures in austenitic stainless steel weld metals, the effects of delta-ferrite on high-cycle fatigue properties are not significant.
引用
收藏
页码:97 / 104
页数:8
相关论文
共 50 条
[41]   Creep properties of austenitic stainless-steel weld metals [J].
Nassour, A ;
Bose, WW ;
Spinelli, D .
JOURNAL OF MATERIALS ENGINEERING AND PERFORMANCE, 2001, 10 (06) :693-698
[42]   The effects of robot welding and manual welding on the low- and high-cycle fatigue lives of SM50A carbon steel weld zones [J].
Han, Changwan ;
Yang, Changhwan ;
Kim, Hanjong ;
Park, Seonghun .
ADVANCES IN MECHANICAL ENGINEERING, 2019, 11 (03)
[43]   Creep properties of austenitic stainless-steel weld metals [J].
A. Nassour ;
W. W. Bose ;
D. Spinelli .
Journal of Materials Engineering and Performance, 2001, 10 :693-698
[44]   Effects of laser surface melting on corrosion resistance in weld metals of Mo containing austenitic stainless steels [J].
Nakao, Yoshikuni ;
Nishimoto, Kazutoshi ;
Zhang, Wen-Ping .
Transactions of the Japan Welding Society, 1993, 24 (01) :57-62
[45]   Effects of in-situ proton-irradiation and thermal-pulse on the high-cycle fatigue properties of low carbon 316 stainless steels [J].
Mizubayashi, H. ;
Tateishi, K. ;
Tanimoto, H. ;
Nakata, K. .
Journal De Physique. IV : JP, 1996, 6 (08) :853-856
[46]   Effects of in-situ proton-irradiation and thermal-pulse on the high-cycle fatigue properties of low carbon 316 stainless steels [J].
Mizubayashi, H ;
Tateishi, K ;
Tanimoto, H ;
Nakata, K .
JOURNAL DE PHYSIQUE IV, 1996, 6 (C8) :853-856
[47]   EFFECTS OF MICROCRACKS ON MECHANICAL PROPERTIES OF AUSTENITIC STAINLESS-STEEL WELD-METALS [J].
HONEYCOMBE, J ;
GOOCH, TG .
METAL CONSTRUCTION AND BRITISH WELDING JOURNAL, 1973, 5 (04) :140-147
[48]   Effects of high-cycle fatigue on the viscoelastic properties of epoxy resin [J].
Tayyebati, Mahdi ;
Sarhadi, Ali ;
Fraisse, Anthony ;
Almdal, Kristoffer ;
Eder, Martin A. .
EUROPEAN JOURNAL OF MECHANICS A-SOLIDS, 2025, 112
[49]   Progress on welding of high nitrogen alloyed austenitic stainless steels [J].
Holmberg B. .
Welding in the World, 2002, 46 (1-2) :3-9
[50]   Progress on welding of high nitrogen alloyed austenitic stainless steels [J].
Holmberg, B. .
Welding Research Abroad, 2004, 50 (11) :1-7