首页> 外文期刊>Journal of Minerals and Materials Characterization and Engineering >Comparative Studies on Microstructure and Mechanical Properties of Granulated Blast Furnace Slag and Fly Ash Reinforced AA 2024 Composites
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Comparative Studies on Microstructure and Mechanical Properties of Granulated Blast Furnace Slag and Fly Ash Reinforced AA 2024 Composites

机译:粒状高炉矿渣与粉煤灰增强AA 2024复合材料的组织和力学性能比较研究

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Composites are most promising materials of recent interest. Metal matrix composites (MMCs) possess significantly improved properties compared to unreinforced alloys. There has been an increasing interest in composites containing low density and low cost reinforcements. In view of the generation of large quantities of solid waste by products like fly ash and slags, the present expensive manner in which it is discarded, new methods for treating and using these solid wastes are required. Hence, composites with fly ash and granulated blast furnace (GBF) slag as reinforcements are likely to overcome the cost barrier for wide spread applications in automotive and small engine applications. In the present investigation, AA 2024 alloy-5 wt% fly ash and GBF slag composites separately were made by stir casting route. Phase identification and structural characterization were carried out on fly ash and GBF slag by X-ray diffraction studies. Scanning electron microscopy with energy dispersive X-ray spectroscopy EDS was used for microstructure analysis. The hardness and compression tests were carried out on all these alloy and composites. The SEM studies reveal that there was a uniform distribution of fly ash and GBF slag particles in the matrix phase and also very good bonding existed between the matrix and reinforcement. Improved hardness and mechanical properties were observed for both the composites compared to alloy; this increase is higher for Al-fly ash composite than Al-GBF slag composite.
机译:复合材料是近来最有希望的材料。与未增强的合金相比,金属基复合材料(MMC)具有明显改善的性能。人们对包含低密度和低成本增强材料的复合材料越来越感兴趣。鉴于由粉煤灰和炉渣等产品产生的大量固体废物,目前昂贵的废弃方法是,需要新的方法来处理和使用这些固体废物。因此,以粉煤灰和高炉矿渣(GBF)作为增强材料的复合材料可能会克服汽车和小型发动机应用中广泛应用的成本障碍。在本研究中,通过搅拌铸造法分别制备了AA 2024合金-5 wt%的粉煤灰和GBF炉渣复合材料。通过X射线衍射研究对粉煤灰和GBF炉渣进行了相鉴定和结构表征。使用能谱X射线能谱仪EDS的扫描电子显微镜进行微观结构分析。对所有这些合金和复合材料进行了硬度和压缩试验。 SEM研究表明,粉煤灰和GBF炉渣颗粒在基体相中分布均匀,基体与增强材料之间也存在很好的结合。与合金相比,两种复合材料的硬度和机械性能均得到改善。铝粉煤灰复合材料的这种增长高于铝-GBF矿渣复合材料。

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