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FIB-SEM investigation on corrosion propagation of aluminium-lithium alloy in sodium chloride solution

机译:FIB-SEM研究铝锂合金在氯化钠溶液中的腐蚀扩展

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摘要

Microstructural characterisation of 2A97-T4 aluminium-lithium alloy was carried out using electron probe microanalysis and transmission electron microscopy (TEM). Scanning electron microscopy (SEM) equipped with energy dispersive X-ray spectroscopy facilities has been employed to examine localised corrosion sites after immersion in sodium chloride solution. A dual beam microscope, which integrates a focused ion beam and an electron beam in one powerful instrument, has also been employed to investigate the development of intergranular corrosion from both surface and cross-section. It was found that localised corrosion is generally initiated at theta phase particles, which represents only 8.4% of the intermetallic (IM) particles in 2A97-T4 aluminium-lithium alloy. theta phase particles exhibit preferential dissolution of aluminium during corrosion testing, with trench formed at their periphery as well. Initiation of intergranular corrosion is relatively late with respect to the attack of IM particles. Owing to the presence of theta phase particles at intergranular corrosion sites and non-uniform distribution of T1 (Al2CuLi) grain boundary precipitates, it is supposed that dealloyed theta phase particles and grain boundary precipitates cooperate to provide the driving force for grain boundary attack.
机译:使用电子探针显微分析和透射电子显微镜(TEM)对2A97-T4铝-锂合金进行了显微组织表征。配备有能量色散X射线光谱仪的扫描电子显微镜(SEM)已用于检查浸入氯化钠溶液后的局部腐蚀部位。在一个功能强大的仪器中将聚焦的离子束和电子束集成在一起的双束显微镜也已被用于研究从表面和横截面的晶间腐蚀的发展。发现在θ相颗粒处通常会发生局部腐蚀,这仅占2A97-T4铝锂合金中金属间(IM)颗粒的8.4%。 θ相颗粒在腐蚀测试期间表现出铝的优先溶解,并且在其外围也形成沟槽。就IM颗粒的侵蚀而言,晶间腐蚀的发生相对较晚。由于在晶间腐蚀部位存在θ相颗粒,并且T1(Al2CuLi)晶界析出物分布不均匀,因此认为脱合金的θ相颗粒和晶界析出物共同为晶界侵蚀提供了动力。

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