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Uncertainty studies of topographical measurements on steel surface corrosion by 3D scanning electron microscopy

机译:通过3D扫描电子显微镜对钢表面腐蚀进行形貌测量的不确定性研究

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摘要

Pitting corrosion is a damage mechanism quite serious and dangerous in both carbon steel boiler tubes for power plants which are vital to most industries and stainless steels for orthopedic human implants whose demand, due to the increase of life expectation and rate of traffic accidents, has sharply increased. Reliable methods to characterize this kind of damage are becoming increasingly necessary, when trying to evaluate the advance of damage and to establish the best procedures for component inspection in order to determine remaining lives and failure mitigation. A study about the uncertainties on the topographies of corrosion pits from 3D SEM images, obtained at low magnifications (where errors are greater) and different stage tilt angles were carried out using an in-house software previously developed. Additionally, measurements of pit depths on biomaterial surfaces, subjected to two different surface treatments on stainless steels, were carried out. The different depth distributions observed were in agreement with electrochemical measurements.
机译:点蚀是非常严重且非常危险的一种破坏机制,这对于大多数行业至关重要的发电厂的碳钢锅炉管和整形外科人类植入物的不锈钢而言,由于预期寿命的增加和交通事故的发生率,其需求急剧增加增加。当试图评估损坏的程度并建立最佳的零件检查程序以确定剩余寿命和减轻故障的能力时,表征这种损坏的可靠方法变得越来越必要。使用先前开发的内部软件,通过低倍率(误差较大)和不同载物台倾斜角获得的3D SEM图像,对腐蚀坑的形貌的不确定性进行了研究。此外,还对生物材料表面的凹坑深度进行了测量,这些表面在不锈钢上进行了两种不同的表面处理。观察到的不同深度分布与电化学测量结果一致。

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