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Showing 1-30 of 329 projects
Biodegradable metal matrix composites (BMMCs) based on magnesium alloys reinforced with natural fibers and nano-apatite are investigated to address the growing ...
The integration of graphene and ceramic particulates into a lightweight steel matrix aims to significantly enhance mechanical performance and functional propert...
This study presents the design, synthesis, and evaluation of a low-temperature self-healing ceramic composite engineered for aerospace tooling alloys, leveragin...
This study develops and characterizes a sustainable lightweight high-entropy alloy (L-HEA) featuring a gradient microstructure tailored for automotive applicati...
The study reports the design, fabrication, and comprehensive characterization of a novel lightweight aluminum alloy composite reinforced with recycled ceramic a...
This study presents a comprehensive approach to developing a zero-waste scrap steel alloy by integrating powder metallurgy (PM) and additive manufacturing (AM) ...
This study reports the development of a scalable low-temperature amorphous steel alloy produced via rapid solidification and controlled annealing, aimed at enha...
The proposed study investigates the development of a high-entropy alloy–based lightweight steel tailored for automotive structural applications, focusing on a...
This study presents a novel low-temperature solid-state recycling (LTSR) route for aluminum alloy scrap to enhance formability and mechanical performance of rec...
A robust multi-scale modeling framework is developed to predict corrosion-fatigue life and damage evolution in aluminum alloys used in aerospace applications, i...
This study reports the development of a cost-effective, corrosion-resistant nano-structured coating for marine-grade aluminum alloys utilizing a low-temperature...
The development of zwitterionic polymer-coated magnesium alloys for corrosion-resistant biomedical implants addresses the critical challenge of rapid degradatio...
This research presents a comprehensive study on the development of lightweight high-entropy alloyed steels (HEA steels) tailored for aerospace applications, foc...
The study presents a novel approach to engineering a tunable multi-scale graphene-based composite aimed at delivering high damping and reduced weight for automo...
This study presents a comprehensive approach to engineering a closed-loop recycled aluminum matrix composite (ALMMC) with in-situ reinforcement derived from fri...
This study reports the development and comprehensive evaluation of a reusable, high-strength aluminum alloy–graphene nanocomposite designed for aerospace appl...
The development of Advanced High-Strength Steel (AHSS) with integrated self-healing capabilities addresses a critical need in aerospace structures for materials...
This study presents the development and evaluation of a hybrid nanocomposite material designed to enhance wear resistance and corrosion protection in steel-weld...
This study presents a comprehensive investigation into the optimization of Ti-6Al-4V lattice structures manufactured via additive processes, with a focus on enh...
This study presents the design, synthesis, and comprehensive evaluation of a recyclable high-entropy alloy (HEA) tailored for lightweight automotive application...
This study presents a comprehensive multi-scale modeling framework to predict the corrosion resistance of high-entropy alloy (HEA) coatings in marine environmen...
The development of high-performance titanium alloys aims to revolutionize aerospace component manufacturing by enhancing material strength, reducing weight, and...
The pursuit of lightweight, durable, and high-strength materials for aerospace applications has intensified the development of advanced aluminum-alloy composite...
This research explores the innovative development of environmentally sustainable aluminum alloys through the incorporation of industrial waste residues, aiming ...
The development of high-performance, lightweight alloys tailored for aerospace applications aims to address the critical demand for materials that combine stren...
The pursuit of lightweight materials with high strength and excellent corrosion resistance is pivotal in advancing automotive safety, fuel efficiency, and envir...
The increasing demand for fuel-efficient and environmentally sustainable vehicles has propelled research into the development of lightweight yet high-strength m...
The increasing demand for sustainable and lightweight materials in the automotive industry necessitates the exploration of innovative composites that combine en...
The pursuit of advanced materials with enhanced mechanical properties and reduced weight has become a pivotal focus in the automotive industry, aiming to improv...
The pursuit of sustainable and high-performance materials in aerospace engineering has intensified interest in recycling processes to develop advanced alloys th...