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Experimental study of corrosion fatigue behaviour of welded steel structures

机译:焊接钢结构腐蚀疲劳行为的实验研究

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Earlier research has shown that stress-raisers at weld geometry, misalignment and post-weld tensile residual stresses caused by the welding process are the major sources of fatigue cracks initiations and propagation in welded steel structures. The problem becomes more pronounced in the presence of corrosive environment, and the rate of crack propagation becomes exceedingly high and finally the structure fails. It has been observed in this study that fatigue crack propagation in the corrosive medium is strongly influenced by weld-geometry parameter (weld-toe undercut) which played a significant role in reducing the fatigue life and fatigue strength of butt-welded structures, and accelerated the time to propagate to failure. From the limited experiments performed in this study, it has been found that the threshold stress intensity factor of butt-welded structures attains a much lower value in corrosive environment than in air environment and its effect needs to be included in fatigue assessment. It is observed that a more rigorous mathematical model can be determined only when relevant important parameters (such as parameters relating to stress ratios, stress concentrations caused by weld-joint geometry variations, type and rate of loading, residual stresses and threshold properties of the material strength) are known.
机译:早期的研究表明,由焊接过程引起的焊缝几何形状处的应力升高,未对准和焊后拉伸残余应力是疲劳裂纹萌生和在钢结构中扩展的主要来源。在存在腐蚀环境的情况下,该问题变得更加明显,并且裂纹扩展的速率变得非常高,最终结构失效。在这项研究中已经观察到,腐蚀介质中疲劳裂纹的扩展受焊接几何参数(焊趾底切)的强烈影响,该参数在降低对接焊接结构的疲劳寿命和疲劳强度方面起着重要作用,传播到失败的时间。从这项研究中进行的有限的实验中,已经发现对接焊接结构的阈值应力强度因子在腐蚀性环境中比在空气环境中获得的值要低得多,并且其影响需要包括在疲劳评估中。观察到只有在相关的重要参数(例如与应力比,由焊接接头几何形状变化引起的应力集中,载荷的类型和速率,残余应力和材料的阈值特性相关的参数)相关的条件下,才能确定更严格的数学模型。强度)是已知的。

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