Osório Wislei R, Spinelli José E, Boeira Alexandre P, Freire Célia M, Garcia Amauri
Department of Materials Engineering, State University of Campinas, UNICAMP, 13083-970 Campinas SP, Brazil.
Microsc Res Tech. 2007 Nov;70(11):928-37. doi: 10.1002/jemt.20496.
The purpose of this research is (1) to investigate the influence of Al(2)Cu intermetallic particles associated with the dendritic arm spacing on the corrosion resistance of different hypoeutectic Al-Cu alloys and (2) to evaluate the electrochemical behavior of a hypoeutectic Al-Cu alloy directionally solidified under unsteady-state heat flow. The as-cast samples were produced using vacuum arc remelting and vertical upward water-cooled solidification. Microscopic examinations were carried out with optical microscopy and scanning electron microscopy + energy dispersiveX-ray analyses. To evaluate the surface corrosion behavior of such alloys, all corrosion tests were performed in a 0.5-M NaCl solution at 25 degrees C using an electrochemical impedance spectroscopy technique and potentiodynamic polarization curve analysis. Based on the tests, corrosion rate and impedance parameters were obtained. The present research has underlined the use of appropriate techniques of characterization for determining Al(2)Cu distribution, morphology, and fraction within the typical microstructures of Al-Cu alloys. The experimental results have established correlations between the Al-rich phase dendritic arm size, the intermetallic particles distribution in the eutectic mixture, the macrosegregation profile, and the resulting corrosion resistance.
(1)研究与枝晶臂间距相关的Al₂Cu金属间化合物颗粒对不同亚共晶Al-Cu合金耐蚀性的影响;(2)评估在非稳态热流下定向凝固的亚共晶Al-Cu合金的电化学行为。铸态样品采用真空电弧重熔和垂直向上水冷凝固制备。使用光学显微镜以及扫描电子显微镜+能量色散X射线分析进行微观检查。为了评估此类合金的表面腐蚀行为,所有腐蚀试验均在25℃的0.5M NaCl溶液中采用电化学阻抗谱技术和动电位极化曲线分析进行。基于这些试验,获得了腐蚀速率和阻抗参数。本研究强调了使用适当的表征技术来确定Al₂Cu在Al-Cu合金典型微观结构中的分布、形态和含量。实验结果建立了富铝相枝晶臂尺寸、共晶混合物中金属间化合物颗粒分布、宏观偏析轮廓与所得耐蚀性之间的相关性。