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The use of fly-ash and rice-hull-ash in Al/SiCp composites: a comparative study of the corrosion and mechanical behavior

机译:粉煤灰和稻壳灰在Al / SiCp复合材料中的使用:腐蚀和机械性能的比较研究

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The corrosion characteristics and mechanical behavior of Al/SiCp/spinel composites prepared by reactive infiltration with fly-ash (FA) and rice-hull ash (RHA) -both with recycled aluminum- were investigated. MgAl2O4 is formed in situ during infiltration in the temperature range 1050-1150 ?°C for 50-70 min in argon atmosphere at a pressure slightly above to that of the atmospheric pressure. Results reveal that both FA and RHA help in preventing SiCp dissolution and the subsequent formation of the unwanted Al4C3. However, FA-composites are susceptible to corrosion via formation of Al4C3 by the interaction of native carbon in FA with liquid aluminum. The foremost corrosion mechanism in both types of composites is attributed to microgalvanic coupling between the intermetallic Mg2Si and the matrix. Microstructure and mechanical characterization show that FA- and RHA-composites possess mechanical properties that are significantly different and that this behavior is due to the original ash and MgAl2O4 morphologies. While RHA composites exhibit higher surface hardness than FA composites, the latter display a higher modulus of rupture.
机译:研究了粉煤灰(FA)和稻壳灰(RHA)与再生铝的反应浸渗制备的Al / SiCp /尖晶石复合材料的腐蚀特性和力学行为。 MgAl2O4是在氩气中,在温度略高于大气压的压力下,于1050-1150°C的温度范围内渗透50-70分钟的过程中原位形成的。结果表明,FA和RHA均有助于防止SiCp溶解以及随后形成不需要的Al4C3。但是,FA复合材料易受腐蚀,因为FA中的天然碳与液态铝的相互作用会形成Al4C3。两种复合材料中最重要的腐蚀机理归因于金属间Mg2Si与基体之间的微电流耦合。微观结构和力学特性表明,FA和RHA复合材料具有明显不同的机械性能,并且这种行为是由于原始的灰分和MgAl2O4形态引起的。尽管RHA复合材料比FA复合材料具有更高的表面硬度,但后者却具有更高的断裂模量。

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