首页> 外文会议>ASME international mechanical engineering congress and exposition >A STUDY ON THE CORROSION AND MECHANICAL PROPERTIES OF AN AL6063 REINFORCED WITH EGG SHELL ASH AND RICE HUSK ASH
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A STUDY ON THE CORROSION AND MECHANICAL PROPERTIES OF AN AL6063 REINFORCED WITH EGG SHELL ASH AND RICE HUSK ASH

机译:卵壳灰和稻壳灰增强的AL6063的腐蚀和力学性能的研究

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Aluminium based metal matrix composites (MMCs) have received considerable attention in the last decade for its potential industrial applications. One of the challenges encountered using Aluminium based MMCs is understanding the influence of the reinforcement particles on the corrosion resistance and mechanical properties. In this study the corrosion behaviour and mechanical properties of A16063 reinforced with egg shell ash and rice husk ash were investigated. Waste Egg Shell Ash (ESA) and Rice Husk Ash (RHA) 212 nm in size were used to produce the composites with 10 wt% of reinforcements via stir casting technique. The RHA and ESA were added in the ratios of 10:0, 7.5:2.5, 5:5, 2.5:7.5, 0:10. Unreinforced A16063 was used as baseline material. Immersion tests, potentiodynamic polarization techniques, tensile tests, optical microscopy (OM) and scanning electron microscopy (SEM) were used to characterize the composites. The results showed that reinforcing with 7.5 wt% RHA + 2.5 wt% ESA provided the highest resistance to corrosion. Generally, a reduction in the corrosion rates were observed for the reinforced composites as the wt% of RHA increased. Porosity levels of the composites reduced with an increase in the percentage of ESA in the matrix. Microstructural characterization using SEM and OM revealed a distribution of pits on the composite surfaces which was more severe with increasing RHA percentage. The UTS (ultimate tensile stress) results revealed that the composite containing 10 wt% RHA had the maximum value of 161 MPa. The results demonstrate that rice husk ash and eggshell ash can be useful in producing low cost Aluminium composites with improved corrosion resistance and tensile properties.
机译:铝基金属基复合材料(MMC)在其潜在的工业应用中已受到近十年的关注。使用铝基MMC遇到的挑战之一是了解增强颗粒对耐腐蚀性和机械性能的影响。本研究研究了蛋壳灰和稻壳灰增强的A16063的腐蚀行为和力学性能。通过搅拌铸造技术,使用尺寸为212 nm的废蛋壳灰(ESA)和稻壳灰(RHA)来生产复合材料,其中复合材料的增强剂含量为10 wt%。以10:0、7.5:2.5、5:5、2.5:7.5、0:10的比例添加RHA和ESA。未增强的A16063被用作基准材料。使用浸入测试,恒电位极化技术,拉伸测试,光学显微镜(OM)和扫描电子显微镜(SEM)来表征复合材料。结果表明,用7.5 wt%的RHA + 2.5 wt%的ESA进行增强可提供最高的耐腐蚀性。通常,随着RHA的wt%增加,观察到增强复合材料的腐蚀速率降低。复合材料的孔隙率水平随着基质中ESA百分比的增加而降低。使用SEM和OM进行的微结构表征表明,复合表面上的凹坑分布随着RHA百分比的增加而变得更加严重。 UTS(最终拉伸应力)结果表明,含10 wt%RHA的复合材料的最大值为161 MPa。结果表明,稻壳灰和蛋壳灰可用于生产具有改善的耐腐蚀性和拉伸性能的低成本铝复合材料。

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