Study of the Effects of Five Different Machining Fluids on the Surface Hardness and Corrosion Behaviour of Al6061 Alloy

Imhade Princess Okokpujie, Jude Ebieladoh Sinebe, Lagouge Kwanda Tartibu
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Abstract

The effects of various machining fluids on the surface hardness and corrosion behaviour of Al6061 alloy were investigated in this study. The study employed the two-step method to develop the machining fluid containing TiO2 nanoparticles with various percentage concentrations. The corrosion study media consist of soluble oil (sample A1), mineral oil (sample A2), 0.2-g/l-TiO2 nano-mineral machining fluid (sample A3), 0.4-g/l-TiO2 nano-mineral machining fluid (sample A4) and 0.6-g/l-TiO2 nano-mineral machining fluid (sample 5). The corrosion study was carried out with Potentiodynamic corrosion and polarisation resistance techniques. After the corrosion study, the SEM and EDS were employed to investigate the microstructure and elemental composition of the machining fluid effects on the Al6061 alloy, and the Vickers micro-hardness machine was used to test the surface hardness of the normal face region that was exposed to the corrosion study. The results show that the soluble oil has a high corrosion rate, with the list polarisation resistance rate compared to the other machining fluid employed in this study. Furthermore, the 0.6-g/l-TiO2 nano-mineral machining fluid has the lowest corrosion rate of 0.115 (µm/year) and the highest polarisation resistance of 1.543 (MΩ). The study concluded that the 0.6-g/l-TiO2 nano-mineral machining fluid is viable for the machining process.
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五种不同加工液对 Al6061 合金表面硬度和腐蚀行为影响的研究
本研究探讨了各种加工液对 Al6061 合金表面硬度和腐蚀行为的影响。研究采用两步法来开发含有不同浓度 TiO2 纳米粒子的加工液。腐蚀研究介质包括可溶性油(样品 A1)、矿物油(样品 A2)、0.2-g/l-TiO2 纳米矿物加工液(样品 A3)、0.4-g/l-TiO2 纳米矿物加工液(样品 A4)和 0.6-g/l-TiO2纳米矿物加工液(样品 5)。腐蚀研究采用电位腐蚀和极化电阻技术进行。腐蚀研究结束后,使用扫描电镜和 EDS 研究了加工液对 Al6061 合金影响的微观结构和元素组成,并使用维氏硬度计测试了暴露在腐蚀研究中的法向面区域的表面硬度。结果表明,与本研究中使用的其他加工液相比,可溶性油具有较高的腐蚀率,其抗极化率为榜首。此外,0.6-g/l-TiO2 纳米矿物加工液的腐蚀速率最低,为 0.115(微米/年),极化电阻最高,为 1.543(兆欧)。研究得出结论,0.6-g/l-TiO2 纳米矿物加工液在加工过程中是可行的。
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