مشروع البحث:
EFFECT OF AL2O3 ADDITION TO 316L STAINLESS STEEL ON MICROSTRUCTURAL AND MECHANICAL PROPERTIES

dc.contributor.advisorProf. Dr. Harun ÇUĞ
dc.contributor.advisorProf. Dr. Mehmet Akif ERDEN
dc.date.accessioned2026-05-10T08:25:00Z
dc.date.available2026-05-10T08:25:00Z
dc.descriptionAluminum oxide (Al2O3) (or alumina) is widely used in technical ceramics, specifically to manufacture advanced ceramics. Besides its exceptional refractoriness, hardness, and resistance to electricity and corrosion, it is inert with superior biocompatibility; thus, it is presently utilized in biomedical and surgical domains. Alumina is used in various fields, including construction, abrasive or chemical waste cleaning, fuel cells, and microelectronics, among others [13,14]. Single-crystal alumina is used as a dental implant. If alumina is produced using particles smaller than 4 μm, the modulus of elasticity rises to 30 GPa, which may cause problems.
dc.description.abstractAustenitic steels are commonly used in several industries because of their excellent properties, as they are highly corrosion resistant, tough, and weldable [1–3]. These properties make them preferred in implants, petrochemistry, automotive, and kitchen equipment. In particular, researchers have been making efforts to improve their mechanical properties without sacrificing their toughness.
dc.identifier989
dc.identifier.urihttps://dspace.academy.edu.ly/handle/123456789/1984
dc.subjectEFFECT OF AL2O3 ADDITION
dc.titleEFFECT OF AL2O3 ADDITION TO 316L STAINLESS STEEL ON MICROSTRUCTURAL AND MECHANICAL PROPERTIES
dspace.entity.typeProject
project.endDate2025
project.funder.nameهندسة ميكانيكية
project.investigatorاسامه البهلول اشتيوي البهلول
project.startDate2024
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