Metal-Based Composite Materials: Preparation, Structure, Properties, and Applications

This reprint is focused on analyzing modern trends and recent advances in the synthesis of new metal-based composite materials. Such composites are increasingly used in civil, automotive, and aerospace engineering, shipbuilding, robotics, nuclear power, portable energy devices, biomedicine, electron...

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Bibliographic Details
Other Authors: Suzdaltsev, Andrey (Editor), Rakhmanova, Oksana (Editor)
Format: Electronic Book Chapter
Language:English
Published: Basel MDPI - Multidisciplinary Digital Publishing Institute 2023
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Online Access:DOAB: download the publication
DOAB: description of the publication
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245 1 0 |a Metal-Based Composite Materials: Preparation, Structure, Properties, and Applications 
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520 |a This reprint is focused on analyzing modern trends and recent advances in the synthesis of new metal-based composite materials. Such composites are increasingly used in civil, automotive, and aerospace engineering, shipbuilding, robotics, nuclear power, portable energy devices, biomedicine, electronic devices, and portable aircraft. Non-ferrous metals are often used as the matrix of composites, aluminum, magnesium, nickel, titanium, and their alloys can act as modifiers with boron, carbon structures, borides, carbides, nitrides, and oxides of refractory metals and high-strength steel. For high-temperature composites, tungsten or molybdenum fibers are used. Despite the large number of scientific works, new methods for the synthesis of such composites in order to improve and optimize their structure and properties are still needed. In this regard, completed works of experimental and theoretical orientation, aimed at the development and optimization of methods for the synthesis of composite materials, as well as the search for new materials, were welcomed for inclusion in this reprint. 
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546 |a English 
650 7 |a Research & information: general  |2 bicssc 
650 7 |a Physics  |2 bicssc 
653 |a composite 
653 |a molecular dynamics 
653 |a magnesium 
653 |a aluminum 
653 |a mechanical properties 
653 |a Al composite 
653 |a Fe40Al intermetallic 
653 |a mechanical milling 
653 |a damage 
653 |a elastic modulus 
653 |a microindentation 
653 |a metal matrix composite 
653 |a high temperatures 
653 |a 7075 alloy 
653 |a lithium-ion battery 
653 |a silicon 
653 |a halide melt 
653 |a electrodeposition 
653 |a silicon fibers 
653 |a nanotubes 
653 |a nanoneedles 
653 |a composite anode 
653 |a tungsten 
653 |a rhenium 
653 |a dealloying 
653 |a anodic polarization 
653 |a developed surface 
653 |a catalyst for HER 
653 |a joining of CFRT/metal 
653 |a hybrid technology 
653 |a pin geometry 
653 |a continuous fiber reinforced thermoplastics 
653 |a electric field 
653 |a perovskite 
653 |a polaron 
653 |a proton 
653 |a metal-matrix composite 
653 |a nano-alumina 
653 |a molten salt synthesis 
653 |a zinc 
653 |a aluminum and magnesium coating 
653 |a HC340LAD + ZM 
653 |a spot welding 
653 |a corrosion 
653 |a GaN/AlN 
653 |a molecular beam epitaxy 
653 |a CVD graphene 
653 |a buffer layer 
653 |a gallium nitride 
653 |a GaN-on-Si technology 
653 |a nanoparticles 
653 |a TiO2 
653 |a oxygen vacancies 
653 |a nuclear reactions 
653 |a deuterium probes 
653 |a silicon carbide 
653 |a electrodeposited silicon 
653 |a composite material 
653 |a anode material 
653 |a Coulombic efficiency 
653 |a high temperature 
653 |a simulation 
653 |a rheology 
653 |a neural network 
653 |a relaxation 
653 |a rheological behavior 
653 |a flow stress 
653 |a Al-Mg alloy 
653 |a Al-Mg-Sc-Zr alloy 
653 |a n/a 
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856 4 0 |a www.oapen.org  |u https://directory.doabooks.org/handle/20.500.12854/128590  |7 0  |z DOAB: description of the publication