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Electrochemical Corrosion Inhibition Process, Adsorption Mechanism and Mechanical Effect of Newbouldia laevis Leaf Extract on Aluminum Alloy in Acidic Environment

机译:酸性环境下Newbouldia laevis叶提取物对铝合金的电化学缓蚀过程,吸附机理和力学效应

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Aims: This research is aimed at using advanced corrosion identification and corrosion inhibition technique to investigate the corrosion inhibition mechanism of Al Alloy (AA5052) in 1.0 M HCl solution using Newboudia laevis leaf extract. Place and Duration of Study: The research was carried out at Material Science Laboratory Group, Physics/Electronic Department, Abia State Polytechnic, Aba Abia State. Methodology: Extraction of the green leaf was done with reflux apparatus under constant temperature. The 100% inhibitor solvent was diluted to the various inhibitor concentrations. Gravimetric technique and electrochemical impedance spectroscopy (EIS) were employed to study the corrosion and corrosion inhibitory behavior of the metal in the various environments. Scanning Electron Microscope and OPTICAL emission microscopy were used to investigate the surface structure of the corroded and inhibited metal alloy. The influence of the leaf extract on the mechanical hardness of the Al alloy AA5052 was tested using Vickers indentation hardness test. Results: The presence of the Newbouldia leavis leaf extract significantly reduced the weight loss and also decreased the rate of chemical attack on the AA5052 alloy. The inhibition efficiency of the inhibitor increases with increase in concentration but decreased with increase in temperature. The introduction of the leaf extract alters the electrochemical behaviours of the metal in the acidic environment. The inhibitor mechanism was found to be through adsorption on the metal surface according to Langmuir adsorption isotherm. The Gibb’s free energy confirms that the inhibition of the leaf to corrosion attacks is spontaneous. The calculated activation energy, heat of adsorption, enthalpy and the entropy implications of the leaf extract were appraised. The surface morphology of the metal was studied to ascertain the level of redemption offered by the green inhibitor molecules to the material degradation. Vickers hardness test revealed that the presence of the inhibitor improved the mechanical hardness of the corroded Al alloy. Conclusion: The acidic corrosion of AA5052 has been studied. The study shows that Newboudia laevis extract can be used to combat the corrosion attacks on AA5052 alloy.
机译:目的:本研究旨在使用先进的腐蚀识别和缓蚀技术研究Newboudia laevis叶提取物对铝合金(AA5052)在1.0 M HCl溶液中的缓蚀机理。研究的地点和持续时间:该研究是在阿坝州阿比亚州理工学院物理/电子学系材料科学实验室小组进行的。方法:绿叶的提取是在恒定温度下用回流装置完成的。将100%抑制剂溶剂稀释至各种抑制剂浓度。重量技术和电化学阻抗谱(EIS)用于研究金属在各种环境下的腐蚀和缓蚀性能。用扫描电子显微镜和光学发射显微镜研究了腐蚀和抑制的金属合金的表面结构。使用维氏压痕硬度测试测试叶提取物对铝合金AA5052的机械硬度的影响。结果:Newbouldia leavis叶提取物的存在显着减少了重量损失,还降低了对AA5052合金的化学侵蚀速率。抑制剂的抑制效率随浓度增加而增加,但随温度增加而降低。叶提取物的引入改变了金属在酸性环境中的电化学行为。根据Langmuir吸附等温线,发现其抑制机理是通过在金属表面上的吸附。吉布的自由能证实,叶片对腐蚀的抑制作用是自发的。评估了叶提取物的活化能,吸附热,焓和熵的影响。研究了金属的表面形态,以确定绿色抑制剂分子为材料降解提供的赎回水平。维氏硬度测试表明,抑制剂的存在改善了腐蚀的铝合金的机械硬度。结论:研究了AA5052的酸性腐蚀。研究表明,Newboudia laevis提取物可用于抵抗AA5052合金的腐蚀。

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