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Project Ideas for Master of Engineering in Materials Science and Engineering

Explore the structure, performance, and innovation of advanced materials for emerging technologies.

🏛 Introduction

The ME in Materials Science and Engineering at UF enables engineers to master the development and analysis of metals, polymers, ceramics, composites, and electronic materials. Students explore materials behavior, thermodynamics, nanotechnology, and manufacturing processes with applications in aerospace, electronics, energy, and biomedical devices. The program combines laboratory research with computational modeling to drive next-generation materials innovation.

💡 Suggested Project Titles

Study on the mechanical properties of 3D-printed carbon fiber composites

Development of biodegradable polymer blends for packaging applications

Nanoparticle synthesis for enhanced photocatalytic water treatment systems

Investigation of phase transitions in shape memory alloys for actuators

Microstructure-property relationship analysis in aluminum-silicon alloys

Synthesis and characterization of perovskite materials for solar cell efficiency

Thesis on corrosion resistance of nickel-based superalloys in marine environments

Evaluation of graphene-reinforced epoxy composites for aerospace coatings

Atomic-scale simulation of dislocation motion in bcc metals

Design of hydrogel-based drug delivery systems for targeted therapy

Study of ceramic sintering parameters for dental implant applications

Thermal conductivity analysis of phase-change materials in electronics cooling

Development of flame-retardant polymer coatings using bio-based additives

Materials characterization of recycled plastic blends for construction applications

Multiphysics modeling of thermal barrier coatings for turbine engines

Thin-film deposition techniques for high-performance battery electrodes

Study of fatigue behavior in titanium alloys for orthopedic implants

Design of magnetocaloric materials for solid-state refrigeration

Electrochemical analysis of supercapacitor materials based on carbon nanofibers

Investigation of anisotropy in additively manufactured metal parts

University of Florida – ME in Materials Science and Engineering

Innovate the materials that shape our future, from nanoscale to structural systems.

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