Reinforced Polymer Composites

This book, consisting of 21 articles, including three review papers, written by research groups of experts in the field, considers recent research on reinforced polymer composites. Most of them relate to the fiber-reinforced polymer composites, which are a real hot topic in the field. Depending on t...

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Bibliographic Details
Other Authors: Tcherdyntsev, Victor (Editor)
Format: Electronic Book Chapter
Language:English
Published: Basel, Switzerland MDPI - Multidisciplinary Digital Publishing Institute 2021
Subjects:
DLP
PP
PVA
CMC
n/a
Online Access:DOAB: download the publication
DOAB: description of the publication
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520 |a This book, consisting of 21 articles, including three review papers, written by research groups of experts in the field, considers recent research on reinforced polymer composites. Most of them relate to the fiber-reinforced polymer composites, which are a real hot topic in the field. Depending on the reinforcing fiber nature, such composites are divided into synthetic and natural fiber-reinforced ones. Synthetic fibers, such as carbon, glass, or basalt, provide more stiffness, while natural fibers, such as jute, flax, bamboo, kenaf, and others, are inexpensive and biodegradable, making them environmentally friendly. To acquire the benefits of design flexibility and recycling possibilities, natural reinforcers can be hybridized with small amounts of synthetic fibers to make them more desirable for technical applications. Elaborated composites have great potential as structural materials in automotive, marine and aerospace application, as fire resistant concrete, in bridge systems, as mechanical gear pair, as biomedical materials for dentistry and orthopedic application and tissue engineering, as well as functional materials such as proton-exchange membranes, biodegradable superabsorbent resins and polymer electrolytes. 
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546 |a English 
650 7 |a Technology: general issues  |2 bicssc 
653 |a glass fibers 
653 |a surface modification 
653 |a polyethersulfone 
653 |a impregnation 
653 |a composite materials 
653 |a mechanical properties 
653 |a damping properties 
653 |a stability 
653 |a 3D printing 
653 |a composites 
653 |a DLP 
653 |a lignocellulose 
653 |a nanoindentation 
653 |a fiber-reinforced polymer 
653 |a natural fibers 
653 |a synthetic fibers 
653 |a PET fiber 
653 |a PP 
653 |a compatibility 
653 |a modification 
653 |a co-injection molding 
653 |a fiber reinforced plastics (FRP) 
653 |a fiber orientation distribution (FOD) 
653 |a micro-computerized tomography (μ-CT) scan technology 
653 |a bearing 
653 |a salt fog aging 
653 |a glass-flax hybrid coposites 
653 |a pinned joints 
653 |a failure modes 
653 |a polymer-matrix composites 
653 |a carbon fibers 
653 |a polysulfone 
653 |a rubber 
653 |a short jute fibers 
653 |a surface treatments 
653 |a scanning electron microscopy 
653 |a PVA 
653 |a CMC 
653 |a Na2CO3 
653 |a film 
653 |a hydrogel mechanical properties 
653 |a nanocomposites 
653 |a double-network hydrogels 
653 |a polymer-nanoparticle interactions 
653 |a bamboo-plastic composites (BPCs) 
653 |a waste bamboo fibers 
653 |a chemical composition 
653 |a physico-mechanical properties 
653 |a thermal decomposition kinetics 
653 |a PEEK composites 
653 |a reinforcements 
653 |a self-lubricating bush 
653 |a friction and wear 
653 |a pin joints 
653 |a flat slab 
653 |a two-way shear 
653 |a carbon fiber reinforced polymers 
653 |a glass fiber reinforced polymers 
653 |a natural rubber 
653 |a maleated natural rubber 
653 |a palm stearin 
653 |a halloysite nanotubes 
653 |a heat treatment 
653 |a surface modification of staple carbon fiber 
653 |a natural rubber latex 
653 |a reinforcement mechanism 
653 |a dopamine 
653 |a rubber composite 
653 |a bifunctionally composite 
653 |a sulfonic acid based proton exchange membrane 
653 |a silica nanofiber 
653 |a mechanical stability 
653 |a high temperature fuel cell 
653 |a polyetherimide 
653 |a polycarbonate 
653 |a polyphenylene sulfone 
653 |a kenaf fibre 
653 |a glass fibre 
653 |a hybrid composites 
653 |a low velocity impact 
653 |a damage progression 
653 |a bamboo 
653 |a n/a 
653 |a poly (lactic acid) (PLA) 
653 |a wastes rubber 
653 |a recycling 
653 |a tensile properties 
856 4 0 |a www.oapen.org  |u https://mdpi.com/books/pdfview/book/4164  |7 0  |z DOAB: download the publication 
856 4 0 |a www.oapen.org  |u https://directory.doabooks.org/handle/20.500.12854/76715  |7 0  |z DOAB: description of the publication