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不锈钢焊接工字形截面残余应力分布试验研究
引用本文:袁焕鑫,王元清,石永久,舒赣平,廖东帆.不锈钢焊接工字形截面残余应力分布试验研究[J].建筑结构学报,2014,35(6):84-92.
作者姓名:袁焕鑫  王元清  石永久  舒赣平  廖东帆
作者单位:1.清华大学 土木工程系, 北京 100084; 2.东南大学 土木工程学院, 江苏南京210096;; 3.深圳市麦诺幕墙技术有限公司, 广东深圳 518020
基金项目:高等学校博士学科点专项科研基金项目(20110002130002);北京市自然科学基金项目(8112018);教育部、国务院学位委员会博士研究生学术新人奖项目(2012)
摘    要:通过焊接加工10个不锈钢工字形截面试件(选材包括奥氏体型S30408和双相型S22253两种),采用分割法将试件截面切分成条带,量测释放的残余应变,计算得出截面的残余应力大小与分布形态。结果表明:试件截面的残余拉应力峰值低于材料的名义屈服强度,对于奥氏体型S30408和双相型S22253两种不锈钢试件的截面残余拉应力峰值分别约为其名义屈服强度的80%和60%。基于试验结果对现有简化分布模型的评估表明其应用的局限性,提出可以较准确描述不锈钢焊接工字形截面残余应力分布的建议简化模型,结合现有的其他试验数据,对建议简化分布模型的适用范围进行了验证和推广,可以为不锈钢结构构件的稳定性研究和设计提供参考。

关 键 词:不锈钢构件  残余应力  分布模型  分割法  焊接工字形截面  

Experimental study on residual stress distributions in fabricatedstainless steel I-sections
YUAN Huanxin,WANG Yuanqing,SHI Yongjiu,SHU Ganping,LIAO Dongfan.Experimental study on residual stress distributions in fabricatedstainless steel I-sections[J].Journal of Building Structures,2014,35(6):84-92.
Authors:YUAN Huanxin  WANG Yuanqing  SHI Yongjiu  SHU Ganping  LIAO Dongfan
Affiliation:1.Department of Civil Engineering, Tsinghua University, Beijing 100084, China;; 2.College of Civil Engineering, Southeast University, Nanjing 210096, China;; 3.MSC Industrial Technology Co., Ltd, Shenzhen 518020, China
Abstract:A total of ten stainless steel I-section specimens were fabricated by welding and prepared for this experimental study, including austenitic grade S30408 and duplex grade S22253. All the test specimens were cut into small strips by means of the sectioning method. The magnitudes and distributions of residual stresses were obtained by the measured relieved residual strains. It is revealed that the measured peak tensile residual stresses are lower than the nominal yield strengths. Specifically, the peak values of tensile residual stresses in S30408 and S22253 test specimens reach 80% and 60% of the corresponding yield strengths, respectively. Based on the obtained test results, existing distribution models were evaluated and proved to be improper for fabricated stainless steel I-sections. Newly proposed distribution models were presented and further validated by all available test data, extending their scope of application to other stainless steel alloys. The test data and the proposed distribution models can be used in research and design of structural stainless steel members.
Keywords:distribution model  fabricated I-section  residual stress  sectioning method  stainless steel member  
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