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Carbon-fiber-reinforced polymers
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Related lectures (32)
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Weibull Model: Random Data
Explores the Weibull model's application to random data and its significance in analyzing material strength and failure probability.
Materials Science of Cycling: Frame, Tires, and Accessories
Delves into the materials science behind cycling, covering bike frame alloys, tire materials, and accessories.
Polymer Plasticity: Yield Stress and Deformation Mechanisms
Explores polymer plasticity, including yield stress, deformation mechanisms, and the role of temperature and molecular structure.
Micromechanics of Composites
Explores the micromechanics of composites, including laminates and textile composites, discussing properties and reinforcement.
Circular Materials Economy: Nanocellulose Applications
Delves into circular materials economy and nanocellulose applications in sustainability and various industries.
Organic Bioelectronics: Fundamentals and Applications
Explores the fundamentals of organic bioelectronics, including carbon-based materials, fabrication techniques, and bioelectronic interfaces.
Earthen Concrete: Advantages and Techniques
Explores the advantages and techniques of earthen concrete construction, including low energy consumption, ease of construction, and various stabilization methods.
Laminate Analysis: Introduction
Introduces laminate analysis, covering plane stress, rotation in 2D, and special laminates.
Composite Materials: Properties, Implementation, Design
Explores composite materials properties, implementation, and design, including selection, mechanics, and recycling.
Polymer Mechanics: Entropic Origin of Material Properties
Discusses the entropic origin of material properties in polymers, focusing on deformation behavior and mechanical properties.