首页> 外文期刊>International Journal of Metalcasting: Leading the Transfer of Research and Technology for the Global Metalcasting Industry >Microstructural Characteristics, Mechanical Properties, Fracture Analysis and Corrosion Behavior of Hypereutectic Al-13.5Si Alloy
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Microstructural Characteristics, Mechanical Properties, Fracture Analysis and Corrosion Behavior of Hypereutectic Al-13.5Si Alloy

机译:过化Al-13.5Si合金的微观结构特征,力学性能,断裂分析及腐蚀行为

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摘要

Hypereutectic Al-13.5Si alloy containing 1.47% of copper and 1.30% of magnesium was designed as a potential material for internal combustion engine pistons. The optical microscopy and scanning electron microscopy (SEM) revealed the fine dendrites of -Al phase and significantly dispersed eutectics in as-cast specimens. Several intermetallic phases were observed indicating different crystallization velocities and alloy composition nonuniformities. The tensile testing and hardness measurements performed at room temperature have shown an excellent tensile strength and hardness of as-cast specimens, but low elongation due to a complex multiphase structure. The mechanical examinations at 250 degrees C and 300 degrees C have presented a decrease in tensile strength and an increase in elongation, while hardness was slightly changed. The fractographic analysis has shown the features of the brittle as well as ductile fracture. The areas of dimples and areas containing particles with smooth surfaces were detected. Electrochemical methods, Tafel linear polarization, cyclic voltammetry, chronoamperometric measurement and impedance spectroscopy were employed to determine the corrosion behavior of as-cast specimens in 0.5M NaCl solution. The resistant oxide layer formed on the surface was not entirely consistent due to the appearance of intermetallic phases. SEM examinations of corroded samples did not discover severe pits on their surfaces.
机译:含有1.47%的铜和1.30%的镁的过度晶体Al-13.5Si合金设计为内燃机活塞的潜在材料。光学显微镜和扫描电子显微镜(SEM)揭示了-Al-阶段的精细树枝状,并且在铸造标本中显着分散了分散的共肠。观察到几个金属间相表明不同的结晶速度和合金组合物不均匀。在室温下进行的拉伸测试和硬度测量显示出优异的抗拉强度和铸造样品的硬度,但由于复杂的多相结构引起的伸长率低。 250℃和300摄氏度的机械检查提出了拉伸强度的降低和伸长率的增加,而硬度略微改变。 Fretography分析表明了脆性的特征以及延性骨折。检测凹坑的区域和含有平滑表面的颗粒的区域。电化学方法,采用Tafel直线偏振,循环伏安法,计时率测量和阻抗光谱法测定0.5M NaCl溶液中的浇铸样品的腐蚀行为。由于金属间相的出现,在表面上形成的抗性氧化物层并不完全一致。腐蚀样品的SEM检查没有发现它们的表面上的严重凹坑。

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