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基于结构应力的转向架构架焊缝疲劳强度研究

周张义,黄运华,杨阳,丁军君

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周张义, 黄运华, 杨阳, 丁军君. 基于结构应力的转向架构架焊缝疲劳强度研究[J]. 江南娱乐网页版入口官网下载安装学报, 2018, 53(5): 937-944. doi: 10.3969/j.issn.0258-2724.2018.05.009
引用本文: 周张义, 黄运华, 杨阳, 丁军君. 基于结构应力的转向架构架焊缝疲劳强度研究[J]. 江南娱乐网页版入口官网下载安装学报, 2018, 53(5): 937-944.doi:10.3969/j.issn.0258-2724.2018.05.009
ZHOU Zhangyi, HUANG Yunhua, YANG Yang, DING Junjun. Study on Fatigue Strength of Welds in Bogie Frame Based on Structural Stresses[J]. Journal of Southwest Jiaotong University, 2018, 53(5): 937-944. doi: 10.3969/j.issn.0258-2724.2018.05.009
Citation: ZHOU Zhangyi, HUANG Yunhua, YANG Yang, DING Junjun. Study on Fatigue Strength of Welds in Bogie Frame Based on Structural Stresses[J].Journal of Southwest Jiaotong University, 2018, 53(5): 937-944.doi:10.3969/j.issn.0258-2724.2018.05.009

基于结构应力的转向架构架焊缝疲劳强度研究

doi:10.3969/j.issn.0258-2724.2018.05.009
详细信息
    作者简介:

    周张义(1982—),男,讲师,博士,研究方向为铁道机车车辆结构疲劳,E-mail: 13880789011@yeah.net

  • 中图分类号:TG408

Study on Fatigue Strength of Welds in Bogie Frame Based on Structural Stresses

    • 摘要:为了解决现行标准中转向架构架焊缝容许疲劳强度数据存在的问题,针对当前的各种结构应力方法和数据,就其在焊缝结构应力测试、容许应力幅、设计值存活率、平均应力修正、焊缝修整疲劳强度提高及极限容许应力确定等方面的关系和差异进行对比,并构建了Q345钢焊缝基于实测结构应力的疲劳图和S-N曲线. 结果表明:转向架构架焊缝结构应力的实测可沿用B12/RP17规定的方法,即采用6 mm长的应变片并将其前端紧靠焊趾边缘布置;建议借鉴IIW (International Institute of Welding) FAT100和FAT90两组基本数据,并应用其平均应力和焊缝修整疲劳强度提高的修正方法,构建更加合理的基于实测结构应力的焊缝容许疲劳强度数据;对于2 × 10 6次循环数对应的疲劳图,极限容许应力可参考DVS 1612规定的方法,由母材屈服极限除以相应的安全系数确定.

    • 图 1Haibach提出的应变片布置

      Figure 1.Strain gauge arrangement according to Haibach

      图 2B12/RP17规定的应变片布置

      Figure 2.Strain gauge arrangement according to B12/RP17

      图 3横向承载对接焊缝接头

      Figure 3.Transversely loaded butt joints

      图 4B12/RP17的焊缝结构应力疲劳图

      Figure 4.Fatigue diagrams of weld structural stress in B12/RP17

      图 5JIS 4208规定的应变片布置

      Figure 5.Strain gauge arrangement according to JIS 4208

      图 6JIS 4208的焊缝结构应力疲劳图

      Figure 6.Fatigue diagrams of weld structural stress in JIS 4208

      图 7IIW规定的应变片布置

      Figure 7.Strain gauge arrangement according to IIW

      图 8IIW的焊缝热点应力疲劳图

      Figure 8.IIW fatigue diagrams of weld hot spot stress

      图 9DVS 1612的横向承载对接焊缝接头疲劳图

      Figure 9.Fatigue diagrams of transversely loaded butt joints in DVS 1612

      图 10[σa, 0]均值对比

      Figure 10.Mean value comparison of [σa, 0]

      图 11不同平均应力修正结果

      Figure 11.Results of different mean stress modification

      图 12相对IIW的拉伸平均应力修正差异

      Figure 12.Differences of mean stress modification in tension area compared with IIW

      图 13Q345钢焊缝结构应力疲劳图

      Figure 13.Fatigue diagrams of weld structural stress for Q345 steel

      图 14Q345钢焊缝结构应力S-N曲线

      Figure 14.S-N curves of weld structural stress for Q345 steel

    • 中华人民共和国铁道部. TB/T 2367—2008铁道客车转向架构架、摇枕及摇动台[S]. 北京: 中国铁道出版社, 2008
      中华人民共和国铁道部. TB/T 2368—2005动力转向架构架强度试验方法[S]. 北京: 中国铁道出版社, 2005
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      RADAJ D, SONSINO C M. Fatigue assessment of welded joints by local approaches[M]. Cambridge: Abington Publishing, 1998: 38-55
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      周张义. 高速货车转向架焊接部件疲劳强度研究[D]. 成都: 江南娱乐网页版入口官网下载安装, 2009
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      British Standards Institution. EN 13749—2011 Railway applications-wheelsets and bogies-methods of specifying structural requirements of bogie frames[S]. London: British Standards Institution, 2011
      周张义,李芾,黄运华,等. 动载系数对160 km/h货车转向架焊接件疲劳损伤的影响[J]. 江南娱乐网页版入口官网下载安装学报,2010,45(4): 544-548

      Zhou Zhangyi, LI Fu, Huang Yunhua, et al. Effect of dynamic load coefficients on fatigue damage of welded components for 160 km/h wagon bogie[J]. Journal of Southwest Jiaotong University, 2010, 45(4): 544-548
      肖守讷,杨超,阳光武. 一种新的焊接构架疲劳分析方法[J]. 江南娱乐网页版入口官网下载安装学报,2013,48(2): 199-204

      XIAO Shoune, YANG Chao, YANG Guangwu. A novel fatigue analysis method of welded frames[J]. Journal of Southwest Jiaotong University, 2013, 48(2): 199-204
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    出版历程
    • 收稿日期:2016-12-01
    • 刊出日期:2018-10-01

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