Neutron diffraction measurement and finite element analysis of stress distribution in welded 316L stainless pipe

被引:0
|
作者
Kim, SH [1 ]
Moon, MK
Lee, CH
Em, VT
Choi, YH
Cho, SJ
Hong, KP
Kim, YJ
Nam, UW
Kong, KN
机构
[1] Korea Atom Energy Res Inst, Taejon 305600, South Korea
[2] Korea Astron Obser, Taejon 305348, South Korea
来源
关键词
residual stress; neutron diffraction; finite element analysis; 316L stainless pipe; weldment;
D O I
10.4028/www.scientific.net/KEM.270-273.1310
中图分类号
TQ174 [陶瓷工业]; TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
Stress distribution in welded AISI 316 L stainless steel pipes (diameter 4" and 10") was measured using residual stress instrument installed at 30MWt HANARO reactor of KAERI. The measurements were made along the axial direction transverse to the weld direction from the weld center to the pipe edge. Measurement tracks were repeated at the depth of 1.5 mm from the surfaces of the pipes and at the mid-thickness of the pipes wall. As a whole the stress distribution in circle divide4" and circle divide10" pipes showed the similar tendency. The stress analysis of the welded pipe was carried out using the finite element method. Reasonable agreement in stress distribution with experimental data was observed.
引用
收藏
页码:1310 / 1315
页数:6
相关论文
共 50 条
  • [21] 316L Stainless steel stents with different geometries evaluated by the finite element method
    Stents de aço inoxidável 316L de diferentes geometrias avaliados por elementos finitos
    1600, Elsevier B.V., Netherlands (24): : 1 - 2
  • [22] Investigation of galling mechanisms of 316L stainless steel using finite element method
    Franz, G.
    Agode, K. E.
    Panier, S.
    Lesage, T.
    Jourani, A.
    PROCEEDINGS OF ASIA INTERNATIONAL CONFERENCE ON TRIBOLOGY 2018 (ASIATRIB 2018), 2018, : 251 - 252
  • [23] Residual stress in welded beryllium ring by neutron diffraction and finite element modeling
    Dong, Ping
    Wang, Hong
    Li, Jian
    Sun, Guang-Ai
    Liao, Zhe
    Yang, Jiang-Rong
    Yuanzineng Kexue Jishu/Atomic Energy Science and Technology, 2015, 49 (12): : 2255 - 2260
  • [24] DIC-aided analysis of the fatigue behaviour of a welded 316L stainless steel
    Amina Sriba
    Jérémie Bouquerel
    Jean-Bernard Vogt
    Welding in the World, 2022, 66 : 1915 - 1927
  • [25] A 3D finite element analysis of temperature and stress fields in girth welded 304L stainless steel pipe
    Li, M
    Atteridge, DG
    Meekisho, LL
    West, SL
    TRENDS IN WELDING RESEARCH, 1996, : 51 - 56
  • [26] DIC-aided analysis of the fatigue behaviour of a welded 316L stainless steel
    Sriba, Amina
    Bouquerel, Jeremie
    Vogt, Jean-Bernard
    WELDING IN THE WORLD, 2022, 66 (09) : 1915 - 1927
  • [27] Radiation-induced stress relaxation in high temperature water of type 316L stainless steel evaluated by neutron diffraction
    Ishiyama, Y.
    Rogge, R. B.
    Obata, M.
    JOURNAL OF NUCLEAR MATERIALS, 2011, 408 (02) : 153 - 160
  • [28] Cold drawing of 316L stainless steel thin-walled tubes: Experiments and finite element analysis
    Palengat, M.
    Chagnon, G.
    Favier, D.
    Louche, H.
    Linardon, C.
    Plaideau, C.
    INTERNATIONAL JOURNAL OF MECHANICAL SCIENCES, 2013, 70 : 69 - 78
  • [29] Finite element analysis on bending fretting fatigue of 316L stainless steel considering ratchetting and cyclic hardening
    Ding, Jun
    Kang, Guozheng
    Zhu, Yilin
    Zhu, Minhao
    INTERNATIONAL JOURNAL OF MECHANICAL SCIENCES, 2014, 86 : 26 - 33
  • [30] Residual stress distribution in carbon steel pipe welded joint measured by neutron diffraction
    Hayashi, M
    Ishiwata, M
    Morii, Y
    Minakawa, N
    Root, JH
    MATERIALS SCIENCE RESEARCH INTERNATIONAL, 2000, 6 (04): : 287 - 294