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Ceramic and Colloidal Processing: Course Summary & Exam
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Ceramic Processing: Introduction
Covers the basics of ceramic and colloidal processing, including the importance of quality powders and the unique qualities of ceramics.
Raw Materials and Powder Synthesis
Explores ceramics, glasses, metals, and polymers properties, raw materials importance, and market trends in ceramic products.
Ceramic Materials Processing: Techniques and Analysis
Explores ceramic materials processing techniques like laser diffraction, sieving, sedimentation testing, slip casting, and density determination.
Dispersion Forces: Interactions and Applications
Explores dispersion forces, Van der Waals interactions, and magnetic attractions in ceramics and biomedical applications.
Particle Size Distribution Analysis: Laser Diffraction and Data Interpretation
Explores practical ceramic material techniques and laser diffraction for particle size analysis.
Sintering Fundamentals: Sol-Gel and Thin Films
Explores the sol-gel process, thin films, densification, and the use of organic pore formers.
Sintering Basics: Solid State Grain Growth & Microstructures
Explores the fundamentals of sintering in ceramics, covering matter transport mechanisms, stages of sintering, and microstructure evolution.
Ceramics: Powder Sintering
Explores ceramic manufacturing processes, from drying to sintering and grain growth, emphasizing the importance of proper conditioning before sintering.
Ceramic Processing: Powders & Pieces
Explores ceramic pieces, powders, forming methods, thin films, and surfactants.
Granulation of Ceramic Suspension by Atomization
Explores the granulation of ceramic suspension through atomization and related processes such as slip casting and density measurements.