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The application of carbon materials in fiber energy is focused as it is a hot topic recently.
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In this study, we establish a dynamic shear-lag model to explore the energy dissipation through viscous matrix materials in fiber-reinforced composites and the associations of energy dissipation characteristics with the properties and geometries of constituents.
Non-cellulosic materials in fibers were hydrolyzed with acetic-nitric reagent.
Using cellulose resource either wooden or non-wooden material in fiber related industry attracted the attention of green material researchers in recent years [1, 2].
In recent years, Glass Fiber-Reinforced Polymer (GFRP) has become a widely used material in Fiber-Reinforced Polymer (FRP) composite structures.
Because of material anisotropy in fiber-reinforced composites, design, and optimization processes do become very important and needed more complex analysis compared with isotropic materials.
The high capacity of SnO2 (tin oxide) and high rate capability of Li4Ti5O12 (lithium titanate, LTO) were pooled together for engineering a composite Li ion anode material in hollow fiber edifice by sol-gel/electrospinning.
The carbon fiber reinforced UHTC composites can be highly tailorable materials in terms of fiber, interface, and matrix.
Composite materials, in most cases fiber reinforced polymers, are nowadays used in the aerospace and transportation, in which high specific energy absorption (SEA) and strength are critical issues.
Novel Nd III) complexes, tris bis-perfluoromethane and etris bis-perfluoromethaneymium(III)octandethanesulfonylaminato neodymium IIIesigned and synthesized toctaply to luminescent materials in plastic optical fiber.
Carbon nanocomposites are high-performance carbon-based materials in which carbon fiber (Park and Lee 2015), graphite (Jee et al. 2013; Park et al. 2015), carbon nanotube (CNT) (Cipriano et al. 2008; Ilanchezhiyan et al. 2015; Jee et al. 2013), and carbon nanofiber (CNF) (Lee 2011, 2012; Das et al. 2012; Kang and Lee 2015) are charged in the polymer.
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