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High-Strength Hybrid Textile Composites with Carbon, Kevlar, and E-Glass Fibers for Impact-Resistant Structures. A Review
The paper reviews the characterization of high-performance hybrid textile composites and their hybridization effects of composite’s behavior. Considered are research works based on the finite-element modeling, simulation, and experimental characterization of various mechanical properties of such com...
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Published in: | Mechanics of composite materials 2017-11, Vol.53 (5), p.685-704 |
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container_title | Mechanics of composite materials |
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creator | Priyanka, P. Dixit, A. Mali, H. S. |
description | The paper reviews the characterization of high-performance hybrid textile composites and their hybridization effects of composite’s behavior. Considered are research works based on the finite-element modeling, simulation, and experimental characterization of various mechanical properties of such composites. |
doi_str_mv | 10.1007/s11029-017-9696-2 |
format | article |
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subjects | Aramid fiber reinforced plastics Carbon fiber reinforced plastics Ceramics Characterization and Evaluation of Materials Chemistry and Materials Science Classical Mechanics Composite materials Composites Computer simulation Fatigue (Materials) Finite element method Glass Glass fibers Glass products Glass-epoxy composites Impact resistance Kevlar (trademark) Materials Science Mechanical engineering Mechanical properties Natural Materials Solid Mechanics Textile composites |
title | High-Strength Hybrid Textile Composites with Carbon, Kevlar, and E-Glass Fibers for Impact-Resistant Structures. A Review |
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