Characterization of a Plate Specimen from Phase I of the NRC/EPRI Weld Residual Stress Program

被引:0
|
作者
Kerr, Matthew [1 ]
Rudland, David L. [1 ]
Prime, Michael B.
Swenson, Hunter
Buechler, Miles A.
Clausen, Bjorn
机构
[1] US Nucl Regulatory Commiss, Off Nucl Regulatory Res, Washington, DC 20555 USA
关键词
D O I
暂无
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Time-of-flight neutron diffraction and contour method residual stress measurements were conducted at Los Alamos National Lab (LANL) on a lab sized plate specimen (P4) from Phase I of the joint U.S. Nuclear Regulatory Commission and Electric Power Research Institute Weld Residual Stress (NRC/EPRI WRS) program. The specimen was fabricated from a 304L stainless steel plate containing a seven pass Alloy 82 groove weld, restrained during welding and removed from the restraint for residual stress characterization. This paper presents neutron diffraction and contour method results, and compares these experimental stress measurements to a WRS Finite Element (FE) model. Finally details are provided on the procedure used to calculate the residual stress distribution in the restrained or as welded condition in order to allow comparison to other residual stress data collected as part of the EPRI lead Phase I WRS program.
引用
收藏
页码:1579 / 1587
页数:9
相关论文
共 50 条
  • [31] Effect of Plate Thickness and Weld Position on Distortion and Residual Stress of Welded Structural Steel
    Anis, Muhammad
    Winarto
    MATERIALS MODELING, SIMULATION, AND CHARACTERIZATION, 2011, 689 : 296 - 301
  • [32] The temperature and Residual Stress Distributions of Butt Weld Pass on Nickel Alloy 690 Plate
    Yin, Chun-Ho
    Hsu, Chao-Ming
    Kuang, Jao-Hwa
    MATERIAL DESIGN, PROCESSING AND APPLICATIONS, PARTS 1-4, 2013, 690-693 : 2651 - +
  • [33] Measurement of residual stress distribution at the weld root for a U-rib specimen using the contour method
    Gadallah R.
    Tsutsumi S.
    Yonezawa T.
    Shimanuki H.
    Yosetsu Gakkai Ronbunshu/Quarterly Journal of the Japan Welding Society, 2021, 38 (02): : 49S - 53S
  • [34] Development of Compressive Residual Stress in Structural Steel Weld Toes by Means of Weld Metal Phase Transformations
    Martinez, F.
    Liu, S.
    TRENDS IN WELDING RESEARCH, PROCEEDINGS, 2006, : 583 - +
  • [35] The effect of the distance from the center of a weld to the fixed end on the residual stress and stress intensity factor of a piping weld
    Miyazaki, Katsumasa
    Numata, Masanori
    Saito, Koichi
    Mochizuki, Masahito
    Proceedings of the ASME Pressure Vessels and Piping Conference 2005, Vol 6, 2005, 6 : 817 - 825
  • [36] The Effect of the Distance From the Center of a Weld to the Fixed End on the Residual Stress and Stress Intensity Factor of a Piping Weld
    Miyazaki, Katsumasa
    Numata, Masanori
    Saito, Koichi
    Mochizuki, Masahito
    JOURNAL OF PRESSURE VESSEL TECHNOLOGY-TRANSACTIONS OF THE ASME, 2009, 131 (02):
  • [37] Temperature and residual stress simulations of the NeT single-bead-on-plate specimen using SYSWELD
    Xu, J. J.
    Gilles, P.
    Duan, Y. G.
    Yu, C.
    INTERNATIONAL JOURNAL OF PRESSURE VESSELS AND PIPING, 2012, 99 : 51 - 60
  • [38] RESIDUAL STRESS MEASUREMENT OF A FERRITIC BEAD ON PLATE BENCHMARK TEST SPECIMEN USING THE CONTOUR METHOD
    Hosseinzadeh, Foroogh
    Bouchard, P. John
    PROCEEDINGS OF THE ASME PRESSURE VESSELS AND PIPING CONFERENCE, PVP 2012, VOL 6, PTS A AND B, 2012, : 1201 - 1209
  • [39] Thermoelectric Power Assessment of Weld Microstructure, Phase Stability, Residual Stress, and Properties
    Park, Y. D.
    Olson, D. L.
    Mishra, B.
    Lasseigne, A. N.
    TRENDS IN WELDING RESEARCH, PROCEEDINGS, 2006, : 497 - +
  • [40] Measurement of residual stress in an A533B ferritic steel plate containing a repair weld
    Ficquet, X.
    Truman, C. E.
    Smith, D. J.
    RESIDUAL STRESSES VII, 2006, 524-525 : 653 - 658