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논문 기본 정보

자료유형
학술저널
저자정보
S. Shanmugam (AVS College of Technology) S. Mahalingam (SONA College of Technology) A. Ranjithkumar (SONA College of Technology)
저널정보
한양대학교 세라믹공정연구센터 Journal of Ceramic Processing Research Journal of Ceramic Processing Research 제24권 제3호
발행연도
2023.6
수록면
495 - 502 (8page)

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Scientists attempting to create a variety of tiny industrial components are very interested in AISI1018 mild steel due to itsimproved elasticity, low carbon content, and cost-effectiveness. For different technical and structural requirements, such asmetal panels, engine components, highly pressurized chemical pipelines, machinery parts, and vehicle bonnets, the currentresearch employs mild steel as a cornerstone matrix to generate Ni - Nano Al2O3 Coated AISI1018 Mild Steel Composites. Inorder to determine the ideal Ni - Nano Al2O3 wt. % that displays the best corrosion, mechanical, and surface morphologybehavior, a Ni - Nano Al2O3 coating on mild steel with variable Al2O3 was applied using a reverse pulse electro depositionapproach. According to research observations, increasing the proportion of Al2O3 on the exterior of mild steel has aconsiderable positive impact on mechanical behavior, abrasion resistance, and chemical resistance. Hardness of the HMSAL6samples plated with 3% Al2O3 was 296 HV, which is almost 25% higher than the hardness of the plain samples. Similar studieson corrosion and wear have shown that a 25-40% improvement in corrosion and wear characteristics may be achieved byprogressively increasing the amount of Ni-Al2O3. Through the use of field emission scanning electron microscopy, the efficiencyof the reverse pulse electro deposition technique was also examined. It was discovered from the images that the surface of themild steel is evenly distributed with the included Ni - Nano Al2O3.

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