首页> 外文会议>Edition of the International Conference on Fatigue Design >Fatigue strength of HFMI-treated and stress-relief annealed high-strength steel weld joints
【24h】

Fatigue strength of HFMI-treated and stress-relief annealed high-strength steel weld joints

机译:HFMI处理的疲劳强度和应力消除退火的高强度钢焊缝

获取原文

摘要

The fatigue strength of welded joints is generally irrespective from the base material yield strength due to notch effects at the weld toe or root, tensile residual stresses by the thermo-mechanical joining process and significant changes in local material properties within the heat-affected zone. An effective way to increase the potential of lightweight design exhibits the application of post-weld treatments. Mechanical methods as the high-frequency mechanical impact treatment (HFMI) reduces the geometrical notch, introduces compressive residual stresses and increases the local hardness in the surface layer of the post-treated weld toe area. In this paper the fatigue strength of HFMI-treated joints superimposed by stress-relief annealing is studied. High-strength steel grades S690 and S960 are investigated in as-welded and HFMI-treated condition, both before and after stress-relief annealing. Fatigue tests at a tumescent stress ratio of R=0.1 show an essential increase of the fatigue strength due to the HFMI-treatment compared to the as-welded condition. In contrary, the superimposed post-heat treatment lowers the fatigue strength of HFMI-treated high-strength steel joints characteristically, but however, the final condition exhibits a higher fatigue strength compared to the initial as-welded state. Special focus is laid on the influence of welding distortion, whereat numerical simulations and experimental strain gauge measurements support the back tracing of the acting mechanism. The results indicate that the final local mean stress state due to clamping of the distorted specimens significantly affects the local effective stress ratio at the weld toe during testing, which basically needs to be considered for the fatigue strength evaluation.
机译:由于在焊接脚趾或根部,通过热机械连接过程的缺口效应,焊接接头的疲劳强度通常与基材屈服强度因焊接脚趾或根部,拉伸残余应力的缺点效应,并且在热影响区域内的局部材料特性的显着变化。提高轻质设计潜力的有效方法表现出焊接后处理的应用。作为高频机械冲击处理(HFMI)的机械方法减少了几何凹口,引入了压缩残余应力,并增加了经过处理后的焊接脚趾区域的表面层中的局部硬度。本文研究了由应力消除退火叠加的HFMI处理的关节的疲劳强度。在压力消耗退火之前和之后,在焊接和HFMI处理的条件下研究了高强度钢等级S690和S960。 r = 0.1的肿胀应力比下的疲劳试验表明,由于与焊接条件相比,由于HFMI处理引起的疲劳强度的基本增加。相反,叠加的后热处理特性降低了HFMI处理的高强度钢接头的疲劳强度,但是,与初始的焊接状态相比,最终条件表现出更高的疲劳强度。特别焦点铺设焊接失真的影响,鞭特数值模拟和实验性应变仪测量来支持作用机构的后追踪。结果表明,由于扭曲标本夹紧引起的最终局部平均应力状态显着地影响了在测试期间焊接脚趾处的局部有效应力比,这基本上需要考虑疲劳强度评估。

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