首页> 外文会议>International pipeline conference;IPC 2000 >ROle of prior cyclic loading in the initiation of stress-corrosion cracks on pipeline steels exposed to near-neutral pH environment
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ROle of prior cyclic loading in the initiation of stress-corrosion cracks on pipeline steels exposed to near-neutral pH environment

机译:暴露于近中性pH环境的管线钢在应力腐蚀裂纹萌生时先前循环载荷的作用

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X-52 and X-80 pipeline steels have been used to study the effect of cyclic loading prior to corrosion exposure upon the initiation of stress-corrosion cracks in a near-neutral pH environment. To simulate realistic loading conditions, a cyclic loading scheme was constructed based on pressure fluctuation data collected on operating pipeline systems. In has been observed that cyclic loading either prior to corrosion exposure under static stress or during corosion exposure enhances pitting corrosion and micro-cracking on the steel surface. These pits are seen to be alighned along scratches on the steel surface and to have coaleasced to form micro-cracks at some locations. Some micro-cracks appeared not to have developed from pits, but were instead observed in a direction approximately 45 degree to stress axis. They are believed to have developed at locations where localized deformation such as persistent slip bands has occurred due to cyclic loading. In contrast to cyclic loading, no pits or micro-cracks were seen on the specimen that was subjected to static loading only. The pits and micro-cracks were only observed when the specimens were immersed under a cathodic potential of -790 mV SCE. At the open circuit potential only uniform corrosion occurred on the specimens whether they were cyclically or statically stessed.
机译:X-52和X-80管线钢已被用于研究在接近中性pH的环境中,在暴露于腐蚀之前,循环载荷对应力腐蚀裂纹萌生的影响。为了模拟现实的加载条件,基于在运行的管道系统上收集的压力波动数据构建了循环加载方案。观察到,在静态应力下暴露于腐蚀之前或暴露于腐蚀过程中的循环载荷会增强钢表面的点蚀和微裂纹。这些凹坑被认为是沿着钢表面的划痕而倾斜的,并且在某些位置已经聚结形成微裂纹。一些微裂纹似乎不是从凹坑发展而来的,而是在与应力轴成大约45度的方向上观察到的。据信,它们是在由于周期性载荷而发生局部变形(例如,永久性滑移带)的位置发展的。与周期性加载相反,在仅承受静态加载的样本上没有看到凹坑或微裂纹。仅当将样品浸入-790 mV SCE的阴极电位时,才观察到凹坑和微裂纹。在开路电位下,无论是周期性地还是静态地对样品进行均匀腐蚀。

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