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Local electrochemical studies of the microstructural corrosion of AlCu4Mg1 as-cast aluminium alloy and influence of applied strain

机译:AlCu4Mg1铸态铝合金组织腐蚀的局部电化学研究及施加应变的影响

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摘要

The microstructure of AlCu4Mg1 as-cast aluminium alloy was first determined by means of field emission-scanning electron microscope with an integrated electron dispersion spectrometer, secondary ion mass spectroscopy and atomic force microscopy. Large precipitates (Al2Cu, Al–Si–Mn–Fe–Cu, oxides) were located at grain boundaries, whereas small particles (aluminium, magnesium and copper) were present in grains. The electrochemical response and pitting susceptibility of sites containing precipitates were then investigated after polishing using the electrochemical microcell technique. After straining, big scattering was observed in the electrochemical response. The most active places corresponded to the sites containing wide microcracks and severe damages in the matrix. In this case, the corrosion potential was around ?1,000 mV vs. Ag/AgCl, and the current in the passive domain was five times higher than on the strained matrix. In the absence of severe damage in the matrix or wide microcracks, the corrosion potential was more anodic and the current density in the passive range was around 0.5 mA cm?2. Local polarisation curves carried out in sites containing large precipitates and no defects induced by straining were very close to those obtained in grains far from precipitates.
机译:首先通过具有集成电子弥散光谱仪的场发射扫描电子显微镜,二次离子质谱仪和原子力显微镜来确定AlCu4Mg1铸造铝合金的显微组织。大的析出物(Al2Cu,Al-Si-Mn-Fe-Cu,氧化物)位于晶界处,而小颗粒(铝,镁和铜)存在于晶粒中。然后使用电化学微电池技术对抛光后的沉淀物的电化学响应和点蚀敏感性进行了研究。应变后,在电化学响应中观察到大的散射。最活跃的位置对应于基体中包含宽微裂纹和严重损坏的位置。在这种情况下,相对于Ag / AgCl,腐蚀电位约为?1,000 mV,并且在被动区域的电流是在应变矩阵上的电流的五倍。在没有严重破坏基体或宽微裂纹的情况下,腐蚀电位更呈阳极,并且在被动范围内的电流密度约为0.5 mA cm?2 。在含有大量析出物且没有因应变引起的缺陷的部位进行的局部极化曲线非常接近在远离析出物的晶粒中获得的那些。

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