Reflections on Early Stages of Environmentally Assisted Cracking from Corrosion Pits

A. Turnbull
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引用次数: 3

Abstract

A perspective is presented on the evolution of damage due to environmentally assisted cracking (EAC), from crack precursor development through to long crack growth. The variable nature of crack precursors is highlighted with an observation that uncontrolled chemistry excursions or fabrication defects could eliminate any significant delay associated with that step in the damage evolution process. Specimen preparation by machining and grinding can be critical in determining the apparent susceptibility of the metal to EAC and corrosion, and an example for 316L stainless steel is given to show how physical defects generated by the grinding wheel can become the dominant site for pitting attack relative to MnS inclusions. Corrosion pits are the most commonly observed precursor to cracks in aqueous chloride environments. The loci of sites of crack initiation around a pit are discussed and the inherent challenges in quantifying the growth of cracks smaller than the pit depth described with implications for modelling of the pit-to-crack transition. The remarkably enhanced stress corrosion crack growth rate data for short and small cracks in a 12Cr steam turbine blade in a simulated condensate environment are discussed in the context of crack electrochemistry modelling and the implications for engineering integrity.
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对腐蚀坑环境辅助开裂早期阶段的思考
提出了环境辅助裂纹(EAC)损伤的演化过程,从裂纹前体发展到长裂纹扩展。裂纹前体的可变性质突出显示,观察到不受控制的化学偏移或制造缺陷可以消除与损伤演化过程中该步骤相关的任何重大延迟。通过机械加工和磨削制备试样对于确定金属对EAC和腐蚀的表观敏感性至关重要,并以316L不锈钢为例,说明砂轮产生的物理缺陷如何成为相对于MnS夹杂物的点蚀攻击的主要部位。腐蚀坑是在含水氯化物环境中最常见的裂缝前兆。讨论了坑周围裂纹起裂位置的位置,以及量化小于坑深的裂纹生长的固有挑战,这些挑战对坑到裂纹过渡的建模具有影响。在裂纹电化学建模的背景下,讨论了12Cr汽轮机叶片在模拟凝结水环境中短裂纹和小裂纹的应力腐蚀裂纹扩展速率显著提高的数据及其对工程完整性的影响。
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