...
首页> 外文期刊>Applied Sciences >Influence of Weld Parameters on the Fatigue Life of Deck-Rib Welding Details in Orthotropic Steel Decks Based on the Improved Stress Integration Approach
【24h】

Influence of Weld Parameters on the Fatigue Life of Deck-Rib Welding Details in Orthotropic Steel Decks Based on the Improved Stress Integration Approach

机译:基于改进应力集成方法的焊接参数对正交钢甲板疲劳寿命的影响

获取原文
           

摘要

Fatigue cracks in orthotropic steel decks (OSDs) have been a serious problem of steel bridges for a long time. The structural stress approach is an important approach for fatigue life evaluation of welded structures. Firstly, two parameters and the mesh sensitivity of the stress-based integration equivalent structural stress approach (stress integration approach for short) are analyzed in this paper. Then, the applicability of the master S-N curve is verified based on experimental data of the deck-rib welding details in OSDs. Finally, the multi-scale finite element model (FEM) of Jiangyin Bridge is established, and the bridge fatigue life calculation steps based on the stress integration approach are given. The influence of the slope of the master S-N curve at high cycles on the bridge fatigue life is discussed. Further, the weld parameter influences on the bridge fatigue life are analyzed, as including the following: (1) The determination of the influence of the weld size changes caused by weld manufacturing errors on the bridge fatigue life; (2) the proposal of a new grinding treatment type, and the analysis of influence of the grinding radius on fatigue life; and (3) a comparison of the fatigue life of the deck-rib welding details under 80% partial penetration and 100% full penetration. The results show that the structural stress calculated by the stress integration approach does not change significantly with the parameters of the isolation body width w and the distance δ between the crack propagation surface and the reference surface. To simplify the calculation, δ is set as 0, and w can be set as the mesh size along the weld length direction. The mesh size of the stress integration approach is recommended as 0.25 times the deck thickness. The slope of the master S-N curve at high cycles significantly affects the bridge fatigue life, and a slope of 5 is reasonable. The weld parameter studies for the deck-rib welding details in the OSD of Jiangyin Bridge show that the change of weld size caused by manufacturing errors can obviously affect the bridge fatigue life, and the fatigue life of five different weld types varies from 51 years to 113 years. The new grinding treatment type, without weakening the deck, is beneficial to improving the bridge fatigue life. The fatigue life increases by approximately 5% with an increase of the grinding radius of 2 mm. The fatigue life of 80% partial penetration is slightly higher than that of 100% full penetration.
机译:正交钢甲板(OSDS)的疲劳裂缝一直是钢结构的严重问题。结构应力方法是焊接结构疲劳寿命评价的重要方法。首先,在本文中分析了两个参数和基于应力的积分等效结构应力方法(短路应力集成方法的网格灵敏度。然后,基于OSDS中的甲肋焊接细节的实验数据来验证主S-N曲线的适用性。最后,建立了江阴桥的多尺度有限元模型(FEM),给出了基于应力集成方法的桥梁疲劳寿命计算步骤。讨论了主S-N曲线斜率对高循环对桥梁疲劳寿命的影响。此外,分析了对桥梁疲劳寿命的焊接参数影响,如下:(1)焊接制造误差造成桥梁疲劳寿命焊接尺寸变化的影响; (2)新研磨处理类型的提议,以及磨削半径对疲劳寿命的影响分析; (3)甲板焊接细节疲劳寿命的比较了80%的部分渗透率和100%完全渗透率。结果表明,通过应力集成方法计算的结构应力与隔离体宽度W的参数和裂缝传播表面和参考表面之间的距离δ显着变化。为了简化计算,将Δ设置为0,并且可以沿焊接长度方向设置为网格尺寸。建议应力集成方法的网格尺寸为甲板厚度的0.25倍。高循环处的主S-N曲线的斜率显着影响桥梁疲劳寿命,并且5的斜率是合理的。江阴桥OSD甲板焊接细节的焊接参数研究表明,制造误差引起的焊缝尺寸的变化明显影响桥梁疲劳寿命,五种不同的焊接类型的疲劳寿命从51岁之间变化。 113岁。新的磨削处理类型而不削弱甲板,有利于改善桥梁疲劳寿命。疲劳寿命随着2mm的磨削半径的增加而增加约5%。疲劳寿命为80%渗透率略高于100%完全渗透率。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号