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Showing 1-30 of 334 Thesis
Additive manufacturing (AM) of metals enables rapid customization but introduces complex deformation behavior across multiple length scales that challenges pred...
This study addresses the efficiency, quality, and sustainability challenges associated with rolling recycled aluminum alloy within an automotive supplier enviro...
The rapid adoption of additive manufacturing (AM) in metal engineering promises significant environmental and economic benefits, yet a comprehensive, harmonized...
The advancement of protective and functional coatings in modern engineering hinges on the precise control of microstructure and properties at the nanoscale, whi...
This study investigates the field-scale performance and environmental implications of incorporating recycled steel slag as a supplementary cementitious material...
Recycling-driven polymer–matrix composites (PMCs) hold promise for reducing vehicle weight and environmental impact, yet their adoption hinges on achieving re...
Multiscale modeling of metal–polymer interfaces in composites presents a critical pathway to predict interfacial strength, durability, and failure mechanisms ...
This study investigates refractory wear mechanisms in castings from an Indonesian steel plant to address persistent premature failure, reduced lining life, and ...
In the face of growing demand for high-performance light alloys, this study examines the comparative microstructural, mechanical, and fatigue properties of alum...
This study addresses the escalating challenge of corrosion-induced failures in critical infrastructure by developing an intelligent materials design framework t...
Coastal infrastructure and marine industries face accelerated degradation of metallic components due to chloride-induced corrosion, impinging on service life, s...
The escalating demand for turbine efficiency and environmental compliance necessitates the development of protective coatings that combine high-temperature perf...
This study addresses the persistent gap between fundamental understanding and practical predictability in wear behavior of engineering alloys by developing a mu...
Increasing pressure on the Middle East steel sector to reduce environmental impact and improve resource efficiency motivates a study on lifecycle optimization o...
This study addresses the persistent knowledge gap in how microstructure evolution differs between additively manufactured (AM) metals and conventionally process...
This study addresses the critical challenge of achieving consistent material properties and defect-free builds in additive manufacturing (AM) of metallic alloys...
Wear resistance is a critical performance criterion for tool steels used in high-precision milling, where conventional wrought materials increasingly give way t...
Friction stir processed aluminum-titanium matrix composites (Al-Ti MMCs) offer a promising route to achieving high specific strength and improved damage toleran...
In modern engineering systems, the tribocorrosion behavior of alloys under combined mechanical wear and chemical degradation remains inadequately predictable du...
The automotive sector faces mounting pressures to reduce material costs and environmental impact, prompting a shift toward recycled aluminum alloys; however, tr...
This study addresses the growing need to understand how additive manufacturing–based casting processes compare with conventional casting for aluminum alloys i...
Corrosion of alloys presents a significant challenge in the materials engineering domain, leading to economic losses and safety concerns in sectors such as aero...
The integrity and performance of aluminum alloy welds play a critical role in the structural applications of light-weight industrial, transportation, and aerosp...
The persistent demand for durable and lightweight materials in aerospace, automotive, and marine industries necessitates advancements in aluminum alloy coatings...
The durability and integrity of metallic alloys used in marine environments pose significant challenges due to the aggressive nature of saline conditions, neces...
The increasing demand for durable and reliable steel components in the automotive industry necessitates advancements in wear-resistant materials, addressing the...
The increasing reliance on aluminum alloys in aerospace applications necessitates a comprehensive understanding of their corrosion resistance to ensure safety, ...
The steel industry faces significant challenges in balancing the demand for high-performance materials with sustainability objectives, particularly concerning t...
Marine environments pose significant challenges to the longevity and structural integrity of stainless steel due to aggressive corrosion processes, which reduce...
The increasing demand for energy-efficient and lightweight vehicles has intensified the need for advanced materials that can meet stringent safety and performan...