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基于DIC技术获取焊接接头单轴拉伸力学性能
引用本文:向文欣,祁爽,王永刚,宁方卯,祁磊,薛飞,蔡力勋,余伟炜,梅金娜,师金华.基于DIC技术获取焊接接头单轴拉伸力学性能[J].装备环境工程,2022,19(1):95-100.
作者姓名:向文欣  祁爽  王永刚  宁方卯  祁磊  薛飞  蔡力勋  余伟炜  梅金娜  师金华
作者单位:台山核电合营有限公司,广东 江门 529200;台山核电合营有限公司,广东 江门 529200;西南交通大学,成都 610031;苏州热工研究院有限公司,江苏 苏州 215008
基金项目:江苏省基础研究计划(自然科学基金)面上项目(BK20181177);国家自然科学基金(U1867215);江苏省政策引导类计划(BZ2020057)
摘    要:目的 获取异种金属焊接接头局部拉伸力学性能.方法 针对压水堆核电机组蒸汽发生器接管与安全端异种金属焊接接头(Dissimilar metal weld joint,DMWJ,其接管材料为20MND 5低合金钢,安全端为Z2 CND 18.12控氮奥氏体不锈钢,焊缝材料为INCONEL 52镍基合金),采用等直圆棒拉伸试...

关 键 词:异种金属焊缝  单轴拉伸  应力-应变关系  数字图像相关技术  全场应变
收稿时间:2021/5/24 0:00:00
修稿时间:2021/6/23 0:00:00

The Uniaxial Tensile Mechanical Properties of Welded Joints Obtained Based on the DIC Technology
XIANG Wen-xin,QI Shuang,WANG Yong-gang,NING Fang-mao,QI Lei,XUE Fei,CAI Li-xun,YU Wei-wei,MEI Jin-n,SHI Jin-hua.The Uniaxial Tensile Mechanical Properties of Welded Joints Obtained Based on the DIC Technology[J].Equipment Environmental Engineering,2022,19(1):95-100.
Authors:XIANG Wen-xin  QI Shuang  WANG Yong-gang  NING Fang-mao  QI Lei  XUE Fei  CAI Li-xun  YU Wei-wei  MEI Jin-n  SHI Jin-hua
Institution:Taishan Nuclear Power Joint Venture Co., Ltd., Jiangmen 529200, China;Taishan Nuclear Power Joint Venture Co., Ltd., Jiangmen 529200, China;Southwest Jiaotong University, Chengdu 610031, China;Suzhou Nuclear Power Research Institute, Suzhou 215004, China
Abstract:The purpose of this paper is to obtain the part of tensile mechanical property of dissimilar metal weld joint. For the Taishan III nuclear power plant steam generator nozzle and the safe end to nozzle dissimilar metal weld joint (DMWJ, which nozzle material is 20MND 5 low-alloy steel, the safety end is Z2 CND 18.12 nitrogen-controlled austenitic stainless steel, and the weld material is INCONEL 52 nickel-based alloy), the uniaxial tensile stress-strain relationship of the steam generator nozzle material 20MND 5 was obtained by the isometric round bar tensile test. The DMWJ uniaxial tensile test was obtained by the flat plate tensile test. mechanical properties based on the Digital Image Correlation (DIC) technology. The elastic modulus and yield strength of 20MND 5 are 197 GPa and 498 MPa, respectively. Full-field strain of base metal and weld in DMWJ uniaxial tensile process is consistent with uniaxial tensile properties of DMWJ base metal and local weld positions by comparing with the uniaxial tensile stress-strain relationship of 20MND 5. Therefore, it can be concluded that it is helpful by using the DIC technology to accurately measure the uniaxial stress-strain relationship of the DMWJ, which can be of a great significance for the design, safety assessment and life management of the third-generation pressurized water reactor nuclear power plant.
Keywords:dissimilar metal weld  uniaxial tensile  stress-strain relationship  digital image correlation  full-field strain
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