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首页> 外文期刊>International Journal of Fatigue >Influence of effective stress ratio on the fatigue strength of welded and HFMI-treated high-strength steel joints
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Influence of effective stress ratio on the fatigue strength of welded and HFMI-treated high-strength steel joints

机译:有效应力比对焊接和HFMI处理的高强度钢接头疲劳强度的影响

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This paper contributes to quantify the influence of the local mean stress condition and the local weld geometry on the high-cycle fatigue strength of welded and high frequency mechanical impact (HFMI) treated S960 high-strength steel joints. A calculation procedure is presented, which bases on the effective stress ratio at the weld toe considering the local residual stress condition as well as the specimen clamping-induced and load-dependent notch mean stress state to assess a final influence fatigue factor. Fatigue tests incorporating butt joint, T-joint, and longitudinal stiffener specimens present the effect of different welding parameters and the HFMI technique as post-treatment method. The results show that firstly, by an application of optimized welding parameters, such as filler material and shielding gas, an increase in fatigue strength of 7% for the butt joint and of 30% for the T-joint specimens is experimentally observed. Secondly, it is shown that all investigated specimen types reveal a significant increase in fatigue strength due to the HFMI-treatment up to an enhancement of factor 2.46 in case of the longitudinal stiffener specimens. A study on the effect of stress-relief annealing as post-weld heat treatment (PWHT) process highlights a decrease of about 25% in the high-cycle fatigue strength in case of HFMI-treated T-joint specimens. Applying the introduced calculation method, an effective stress ratio of R_(eff)=- 0.05 for the butt joint and T-joint specimens, and R_(eff)= -0.81 for the longitudinal stiffener specimens in the as-welded condition is calculated. Comparing the computed fatigue factors with the statistically evaluated nominal fatigue strengths it is observed that the effect by the effective stress ratio is dominant, but not fully covers the fatigue enhancement. Furthermore, it reveals that the influence by the effective stress ratio may be related to the fundamental change in the local residual stress state. Especially the HFMI-treatment leads to a reduction of the local residual stress condition up to a difference of 650 MPa for the S960 high-strength steel, which significantly contributes to this influence.
机译:本文有助于量化局部平均应力条件和局部焊缝几何形状对焊接和高频机械冲击(HFMI)处理的S960高强度钢接头的高周疲劳强度的影响。提出了一种计算程序,该程序基于焊趾处的有效应力比,其中考虑了局部残余应力条件以及试样夹紧引起的和载荷相关的缺口平均应力状态,以评估最终影响疲劳因子。疲劳试验结合了对接接头,T形接头和纵向加劲肋样品,展示了不同焊接参数的影响以及作为后处理方法的HFMI技术。结果表明,首先,通过应用优化的焊接参数(例如填充材料和保护气体),对接接头的疲劳强度提高了7%,而T接头的疲劳强度提高了30%。其次,它表明,所有研究的样本类型都显示出由于HFMI处理而导致的疲劳强度显着增加,对于纵向加劲肋样本,其疲劳强度显着提高到2.46倍。对应力消除退火作为焊后热处理(PWHT)过程的影响的研究表明,在经过HFMI处理的T型接头试样的情况下,高周疲劳强度降低了约25%。应用引入的计算方法,计算出在焊接状态下对接和T形接头样品的有效应力比R_(eff)=-0.05,而纵向加劲肋样品的有效应力比R_(eff)= -0.81。将计算得出的疲劳因子与经统计评估的名义疲劳强度进行比较,可以发现有效应力比的影响是主要的,但不能完全覆盖疲劳增强。此外,它揭示了有效应力比的影响可能与局部残余应力状态的根本变化有关。尤其是,HFMI处理使S960高强度钢的局部残余应力条件降低了650 MPa,差异很大。

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