首页> 美国卫生研究院文献>Materials >Corrosion Behaviour of High-Strength Al 7005 Alloy and Its Composites Reinforced with Industrial Waste-Based Fly Ash and Glass Fibre: Comparison of Stir Cast and Extrusion Conditions
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Corrosion Behaviour of High-Strength Al 7005 Alloy and Its Composites Reinforced with Industrial Waste-Based Fly Ash and Glass Fibre: Comparison of Stir Cast and Extrusion Conditions

机译:用工业废料粉煤灰和玻璃纤维加固高强度Al 7005合金及其复合材料的腐蚀行为:搅拌铸造和挤出条件的比较

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摘要

The stringent demand to develop lightweight materials with enhanced properties suitable for various engineering applications is the focus of this research work. Industrial wastes such as fly ash (FA) and S-glass-fibres (GF) were used as reinforcement materials for high-strength alloy, i.e., Al 7005. Stir casting routes were employed for fabricating the four samples, Al 7005, Al 7005 + 5% GF, Al 7005 + 6% FA and Al 7005 + 5% GF + 6% FA. The extrusion process with different extrusion ratios (ER: 5.32:1, and 2.66:1) was used to examine the properties of all four samples. Extruded samples with ER: 5.32: 1 resulted in equiaxed grains with refined structure compared to stir casting parts. The effect of the extrusion process and the addition of reinforcements (GF and FA) on the gravimetric, electrochemical, and electrochemical impedance corrosion behaviour of Al 7005 composites in 1M HCl (Hydrochloric acid) solution were investigated. The results of all three corrosion methods showed that Al 7005 + 6% FA exhibited higher corrosion resistance. Corrosion rate of Al 7005, Al 7005 + 5% GF, Al 7005 + 6% FA and Al 7005 + 5% GF + 6% FA is found equal to 3.25, 2.41, 0.34, and 0.76 mpy, respectively. The FA particles remain inert and act as a physical barrier with corrosive media during the corrosion test. GF undergoes fibre degradation or disrupts the continuity of the glass network as a result of fibre leaching, which increases the corrosion rate in the sample. The gravimetric study showed that the corrosion rates decreased with an increase in extrusion ratio, which might be due to corrosion passivation increases and improved properties. The scanning electron microscopy reveals that corrosion fits, flakes and micro-cracks were observed more in the as-cast composites than that of extrusion composites, promoting the corrosion rate.
机译:严格的要求开发具有增强性能的轻质材料,适合各种工程应用是本研究工作的重点。粉煤灰(FA)和S玻璃纤维(GF)等工业废物用作高强度合金的增强材料,即Al 7005.使用搅拌铸件用于制造四个样品,Al 7005,Al 7005 + 5%GF,Al 7005 + 6%Fa和Al 7005 + 5%GF + 6%FA。用不同挤出比(ER:5.32:1和2.66:1)的挤出方法用于检查所有四个样品的性质。具有ER的挤出样品:5.32:1与搅拌浇铸部件相比,通过精制结构的等轴晶粒产生。研究了挤出方法和增强(GF和Fa)对1M HCl(盐酸)溶液中Al 7005复合材料的重量,电化学和电化学阻抗腐蚀行为的影响。所有三种腐蚀方法的结果表明,Al 7005 + 6%Fa表现出更高的耐腐蚀性。发现Al 7005,Al 7005 + 5%GF,Al 7005 + 6%Fa和Al 7005 + 5%GF + 6%FA的腐蚀速率分别等于3.25,2.41,0.34和0.76 mpy。在腐蚀试验期间,FA颗粒保持惰性并充当腐蚀性介质的物理屏障。 GF经过纤维劣化或破坏由于纤维浸出而导致玻璃网络的连续性,这增加了样品中的腐蚀速率。重量测研究表明,挤压率随着挤出比率的增加而降低,这可能是由于腐蚀钝化增加和改善的性能。扫描电子显微镜显示,在浇铸复合材料中观察到腐蚀配合,剥落和微裂纹比挤出复合材料更高,促进腐蚀速率。

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