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Combined Kelvin probe force microscopy and secondary ion mass spectrometry for hydrogen detection in corroded 2024 aluminium alloy

机译:开尔文探针力显微镜和二次离子质谱联用用于腐蚀的2024铝合金中的氢检测

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摘要

The capability of Kelvin probe force microscopy (KFM) to detect and locate hydrogen in corroded 2024 aluminium alloy was demonstrated. Hydrogen was introduced inside the 2024 alloy following a cyclic corrosion test consisting of cycles of immersion in 1 M NaCl solution followed by exposure to air at -20 °C. The combination of scanning electron microscopy, secondary ion mass spectrometry and KFM demonstrated that the grain and subgrain boundaries were preferential pathways for the short-circuit diffusion of hydrogen but also acted as a source of hydrogen diffusion in the lattice over distances of up to ten microns with non-negligible desorption when exposed to air at room temperature for 24 h.
机译:证明了开尔文探针力显微镜(KFM)在腐蚀的2024铝合金中检测和定位氢的能力。在循环腐蚀试验之后,将氢引入2024合金内部,该循环腐蚀试验包括在1 M NaCl溶液中浸泡,然后在-20°C的空气中浸泡的循环。扫描电子显微镜,二次离子质谱和KFM的结合表明,晶界和亚晶界是氢的短路扩散的优先途径,但在长达十微米的距离内,它也是氢在晶格中扩散的来源在室温下暴露于空气24小时后,解吸作用不可忽略。

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