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首页> 外文期刊>International Journal of Fatigue >Waveform and frequency effects on corrosion-fatigue crack growth behaviour in modern marine steels
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Waveform and frequency effects on corrosion-fatigue crack growth behaviour in modern marine steels

机译:波形和频率对现代船用钢腐蚀疲劳裂纹扩展行为的影响

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The primary focus of this work is to investigate the sensitivity of cyclic waveform, frequency (f), load level and microstructure on the corrosion-fatigue crack growth rate (CFCGR) in modern normalised-rolled (NR) and thermomechanical control process (TMCP) ferrite-pearlite steels in the Paris Region of the da/dN vs. ΔK log-log plot. Constant amplitude sinewave (si) and trapezoid waveform (generally referred to here as hold-time (h-t)) were used under frequencies of 0.2 Hz, 0.3 Hz and 0.5 Hz and stress ratio of 0.1. Comparison is also made between the crack path in the S355 TMCP steel under si and h-t in seawater (SW). The role of microstructure in retarding or accelerating fatigue crack growth in SW is also discussed. Experimental results showed that the CFCGR corresponding to the si is higher than that of the h-t for all the load levels and frequencies examined. It was observed that reduction in the f and fatigue load level increased the CFCGR for the h-t but had little effect on the si. Generally, f in the range 0.2-0.5 Hz had little effect; and for a given f an increase in load led to a reduction in the CFCGR, in the Paris Region (PR) for both si and h-t in SW. Under both si and h-t, the CFCGR in the TMCP steels (e.g. S355G8 + M, S355G10 + M) is lower than that of the normalised steels (e.g. S355J2 + N). Metallurgical analyses on the fractured surface of corrosion-fatigue specimens show that the main active crack tip blunting process is the primary factor controlling the CFCGR of steel at high stress intensity factor range (SIFR) and low f in SW. The results obtained from this study have been discussed in terms of the potential impact on the structural design and integrity of offshore wind turbine foundations.
机译:这项工作的主要重点是研究现代归一化轧制(NR)和热机械控制工艺(TMCP)中循环波形,频率(f),载荷水平和微观结构对腐蚀疲劳裂纹扩展速率(CFCGR)的敏感性。 da / dN与ΔK对数对数图的巴黎地区的铁素体-珠光体钢。在0.2 Hz,0.3 Hz和0.5 Hz的频率以及0.1的应力比下,使用了恒定振幅的正弦波(si)和梯形波形(此处通常称为保持时间(h-t))。还比较了si和h-t在海水(SW)下S355 TMCP钢中的裂纹路径。还讨论了微结构在SW中延缓或加速疲劳裂纹扩展中的作用。实验结果表明,在所有负载水平和频率下,对应于si的CFCGR均高于h-t。观察到,f和疲劳负荷水平的降低增加了h-t的CFCGR,但对si的影响很小。通常,f在0.2-0.5 Hz范围内影响不大。对于给定的f,在巴黎地区(PR),负荷增加导致SWF的CFCGR降低。在si和h-t下,TMCP钢(例如S355G8 + M,S355G10 + M)中的CFCGR低于正火钢(例如S355J2 + N)中的CFCGR。腐蚀疲劳试样断裂表面的冶金分析表明,主要的活动裂纹尖端钝化过程是控制钢在高应力强度因子范围(SIFR)和低SW中CFCGR的主要因素。已经从对海上风力发电机基础的结构设计和完整性的潜在影响方面讨论了从这项研究中获得的结果。

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