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Carbon fiber reinforced plastics. --- Crack propagation. --- Delaminating. --- Fractography.
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Nanocomposites. --- Micromechanics. --- Computational mechanics. --- Carbon fiber reinforced plastics. --- Molecular dynamics.
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Aerospace industry. --- Aircraft structures. --- Carbon fiber reinforced plastics. --- Composite structures. --- Flight safety.
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Crack geometry. --- Damage. --- Discontinuity. --- Displacement. --- Finite element method. --- Mechanical properties. --- Carbon fiber reinforced plastics. --- Multiscale models.
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Carbon fiber reinforced plastics. --- Environmental tests. --- Damage assessment. --- Destructive tests. --- Nondestructive tests.
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Composite materials. --- Structural health monitoring. --- Lightning. --- Carbon fiber reinforced plastics. --- Aircraft structures.
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Low-dimensional Materials and Applications systematically introduces the preparation and performance of low-dimensional materials, such as carbon fiber, carbon nanotubes, graphene etc, as well as their applications in environmental pollution control, electronics, coating industry and defense technologies. Written with a practical focus and containing abundant examples, it is well suited for both researchers and engineers.
Carbon. --- Carbon composites. --- Graphene. --- Carbon Fiber. --- Carbon Nanotubes. --- Electronics. --- Low-dimensional Materials. --- Pollution.
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This book offers recommendations on the milling processes for the carbon fiber reinforced plastic CFRP/Al2024. Due to the anisotropic and non-homogeneous structure of CFRP and the ductile nature of aluminum, the machining of this material is very challenging and causes various types of damage, such as matrix cracking and thermal alterations, fiber pullout and fuzzing during drilling and trimming, which affect the quality of machined surface. The book studies and models the machined surface quality of CFRP/Al2024 using a two-level full factorial design experiment. It describes the processes of trimming using down milling, and statistically and graphically analyzes the influence and interaction of cutting parameters. Lastly, the book presents the optimization of the cutting parameters in order to create a surface texture quality of CFRP/Al2024 to less than 1 µm.
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Leading edges. --- Spacecraft modules. --- Honeycomb structures. --- Composite structures. --- Sandwich structures. --- Shells (structural forms) --- Linings. --- Permeability. --- Leakage. --- Carbon fiber reinforced plastics.
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Carbon fiber is an oft-referenced material that serves as a means to remove mass from large transport infrastructure. Carbon fiber composites, typically plastics reinforced with the carbon fibers, are key materials in the 21st century and have already had a significant impact on reducing CO2 emissions. Though, as with any composite material, the interface where each component meets, in this case the fiber and plastic, is critical to the overall performance.
cellulose derivative --- stack --- lignin --- contact problem --- single fibre pull out --- fatigue --- composite --- sandwich composite --- toughness --- aluminum UNS A97050 --- surface quality --- Carbon fiber --- epoxy curing --- kerf taper --- block copolymers --- conductive yarn --- X-ray transmission --- electron beam --- CT cradle --- thin-wall --- microwave heating --- Seebeck coefficient --- tendon --- air blowing --- epoxy resins --- monocoque structure --- prepreg --- carbon fiber --- surface treatment --- strengthening --- carbon fibre --- surface modification --- epoxy composite --- prestressed near-surface mounted reinforcement (NSMR) --- recycled carbon fiber --- composites --- thermocouple --- structural analysis --- interfacial adhesion --- three-wheeler vehicle --- SOM/SEM --- polycarbonate --- low consumption vehicle --- computed tomography --- thermoforming --- AWJM --- isotropic pitch --- nickel-coated carbon fiber --- finite element model --- dual curing --- fast-cure epoxy resin --- lightweight design --- macrogeometric deviations --- ethylene tar --- CFRP
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