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Path Catalog
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A structured learning path for undergraduate engineering students to understand the science and technology of glass melting and forming. It covers raw materials, batch preparation, melting furnaces, refining, and major forming processes such as float, blowing, pressing, and fiber drawing, grounded in glass viscosity and thermal properties.
This learning path guides undergraduate engineering students through the essential knowledge and skills for manufacturing whiteware ceramic products, covering body formulation, glazing, firing, decoration, and quality standards. It builds from fundamental ceramic processing concepts to advanced control and troubleshooting, preparing learners for careers in the traditional ceramics industry.
This learning path introduces undergraduate students to the materials science and technological evolution of historical ceramics, from raw materials and forming techniques to glazes and archaeometric analysis. It covers the composition of ancient pottery, the development of ceramic technology, and how scientific methods are used to study provenance and ancient manufacturing processes.
This learning path guides undergraduate engineering students through the principles and applications of ceramics in environmental technologies, focusing on ceramic membranes, catalytic converters, photocatalysts (TiO2), and heavy metal adsorption. It builds from foundational chemistry and materials science to specific applications, emphasizing structure-property-performance relationships and real-world case studies.
This learning path equips undergraduate engineering students with the knowledge to analyze energy efficiency and recycling in glass manufacturing. It starts with glass fundamentals, progresses through energy and environmental principles, and culminates in a capstone analysis integrating recycling and energy reduction strategies.
A systematic graduate-level path covering the science and engineering of ceramic matrix composites (CMCs), from fundamental ceramic and composite principles to advanced processing, mechanical behavior, and environmental durability. Learners will analyze how fiber architecture, matrix selection, and processing routes govern the high-temperature performance of CMCs.
This advanced graduate-level path equips learners to evaluate ceramics for solid oxide fuel cells (SOFCs) and batteries, focusing on YSZ electrolytes, electrodes, and Li-ion battery materials. It systematically builds from fundamental ceramic science and electrochemistry to advanced characterization and performance metrics, culminating in practical evaluation strategies.
This learning path guides undergraduate engineering students through the fundamentals and application of ceramic coatings for thermal barrier and wear-resistant purposes. Starting with ceramics and surface engineering basics, it progresses through key coating processes like plasma spraying and electron beam physical vapor deposition, and concludes with coating characterization and performance evaluation.
This learning path guides undergraduate engineering students through the fundamental principles and practical skills needed to design and manufacture optical glasses. It covers glass structure and properties, optical behavior, composition design, fabrication processes, and quality control, culminating in the production of optical lenses.
This learning path guides undergraduate engineering students through the fundamental principles and material properties that determine the ballistic performance of ceramic armor. It covers key armor ceramics (boron carbide, silicon carbide, alumina), their mechanical properties (hardness, fracture toughness), and the mechanisms of projectile interaction. The path emphasizes understanding how these properties influence armor design and performance.