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Nanofibers reinforcement

Banerjee S, Kumar A (2010) Dielectric behavior and charge transport in polyaniline nanofiber reinforced PMMA composites. J Phys Chem Solids 71 381... [Pg.62]

Lee H, Mall S, He P, Shi DL, Narasimhadevara S, Yeo-Heung Y, Shanov V, Schulz MJ (2007) Characterization of carbon nanotube/nanofiber-reinforced polymer composites using an instrumented indentation technique. Composites Part B 38 58-65... [Pg.249]

Iwatake, A., Nogi, M., Yano, H., Cellulose nanofiber-reinforced polylactic acid. Composites Science and Technology. 9, 2103-2106 (2008), DOI http //dx.doi.0rg/lO.lOl6/j.compscitech.2008.03.006. [Pg.926]

Cellulose nanofibers from different sources have showed remarkable characteristics as reinforcement material for optically transparent composites [160, 161], Iwamoto et al. [160] prepared optically transparent composites of transparent acrylic resin reinforced with cellulose nanofibers extracted from wood pulp fibers by fibrillation process. They showed that cellulose nanofiber-reinforced composites are able to retain the transparency of the matrix resin even at high fiber content (up to70 % wt). The aggregation of cellulose nanofibers also contributes to a significant improvement in the thermal expansion properties of plastics. [Pg.43]

Kobayashi S, Kawai W. Development of carbon nanofiber reinforced hydroxyapatite with enhanced mechanical properties. Compos Part A 2007 38 114—23. [Pg.116]

Biodegradable polyester-based composites have been extensively studied for use in medical applications owing to their biocompatible and degradable properties in the human body. The major reported examples in biomedical products are fracture-fixation devices, such as sutures, screws, micro titration plates, and delivery systems [77]. Cellulosic nanofiber reinforced PLA composite materials... [Pg.331]

Hasan, M., Zhou, Y, Jeelani, S. (2006). Thermal and Tensile Properties of Aligned Carbon Nanofiber Reinforced Polypropylene. 11 -l 136. [Pg.254]

Electrospun polystyrene (PS) (Rojas et al. 2009) and PCL (Zoppe et al. 2009) micro or nanofibers reinforced with cellulose nanocrystals were obtained by electrospinning. Nonionic surfactant sorbitan monostearate was used to improve the dispersion of the particles in the hydrophobic PS matrix while surface grafting of long chains was used in the case of PCL. [Pg.195]

Nogi M, Abe K, Handa K et al (2006a) Property enhancement of optically transparent bionanofiber composites by acetylation. Appl Phys Lett 89 233123 33121—233123/233123 Nogi M, Ifuku S, Abe K et al (2006b) Fiber-content dependency of the optical transparency and thermal expansion of bacterial nanofiber reinforced composites. Appl Phys Lett 88 133124/... [Pg.211]

All-cellulosic based composite films can be prepared from either isotropic or anisotropic cellulosic derivatives solutions. However, these composites cannot compete with mechanical properties of cellulose nanofiber reinforced composites. Pioneering studies reported by Favier et al. [35, 36], showed that small amounts of cellulose tunicate whiskers resulted in dramatic improvements in modulus above the glass transititMi temperature of an amorphous polymer matrix, due to the percolation of the cellulose nanofibers. Also recently, a completely new route to cellulose-based composites was proposed by Nishino and Arimoto [37], Soy-keabkaew et al. [38—40], They focused on approaches following self-reinforcing polymer concepts [41, 42] to create composites that often outperform traditional nanofiber reinforced composites [38,40],... [Pg.418]

Cellulose acetate nanofibers reinforced with chopped polyaniline, PANI, nanoparticles were produced. PANI acts as a nucleating agent and increases the formation of crystallites. The overall degree of ciystalhzation is increased, leading to the increased number of dipoles in the nanofibrous nonwoven membranes. ... [Pg.128]

Iyengar PK et al (2013) Polymethyl methacrylate nanofiber-reinforced epoxy composite for shape-memory applications. High Perform PolymCT 25(8) 1000-1006... [Pg.346]

Li L, Yalcin B, Nguyen B N, Meador M A B, Cakmak M (2(X)9) Nanofiber reinforced aerogel (xerogel) synthesis, manufacture and characterization. ACS Appl Mater and Interfaces, 1 2491-2501. [Pg.334]

Jonoobi, M., Mathew, A. R, Abdi, M. M., Makinejad, M. D., Oksman, K. (2012). Aeomparison of modified and unmodified cellulose nanofiber reinforced polylactic acid (RLA) prepared by twin screw extrusion. (4), 991-997. [Pg.14]

Lozano, K. Yang, S. Zeng, Q. Rheological analysis of vapor-grown carbon nanofiber- reinforced polyethylene composites. J. Appl Polym. Sci. 2004, 93, 155-162. [Pg.137]

Currently, the field of synthetic polymer-polymer composites (PPCs) is characterized by very rapid progress since new ideas form the basis of new technologies and often require new materials to be developed. Thus, new materials such as nanofibers and nanofiber reinforced composites can create newer ideas and further applications, which in turn, can result in the development of more specialized materials. The PPC industry requires advanced matrices, advanced reinforcements, advanced additives, advanced technologies and wider application fields. [Pg.301]

The mechanical performance of electrospun nanofibers concerning nanocomposites can be discussed at different levels such as mechanical properties of single nanofibers, nano-fibrous self-products, and nanofiber reinforced composites as well. When designing composites it is crucial to know the mechanical parameters, behavior and damage process of the nanofibrous materials. [Pg.321]

Y. Shimamura, A. Yamamoku, K. Tohgo, S. Tasaka, H. Araki, Mechanical properties of carbon nanofiber reinforced polylactic acid. Key Eng. Mater. 2007, 345-346, 1225-1228. [Pg.94]

Mohammadzadehmoghadam Soheila, Dong You, and Davies Jeffery Ian. Recent progress in electrospun nanofibers Reinforcement effect and mechanical performance. 7. Polym. Sci. Part B. 53 no. 17 (2015) 1171-1212. [Pg.115]

Shaohua Jiang, Duan Gaigai, Schobel Judith, Agarwal Seema, and Greiner Andreas. Short electrospun polymeric nanofibers reinforced polyimide nanocomposites. Compos. Sci. [Pg.115]

Ban W, Song J, Argyropoulos DS, Lucia LA (2006) Improving the physical and chemical functionality of starch-derived films with biopolymers. J Appl Polym Sci 100 2542-2548 Bhatnagar A (2005) Processing of Cellulose Nanofiber-reinforced Composites. J Reinf Plast Compos 24 1259-1268... [Pg.359]

Similar increases in mechanical properties have been reported for cellulose nanofiber reinforced chitosan films by Gallstedt and Hedenqvist (2006) and Nordqvist et al. (2007). [Pg.536]

The use of BC nanofibers reinforced chitosan has also been explored for use in medical applications. Ciechanska (2004) reported improved mechanical properties and moisture holding capacity of these nanocomposites. [Pg.538]

Iwatake A, Nogi M, Yano H (2008) Cellulose nanofiber-reinforced polylactic acid. Compos Sci Technol 68 2103-2106... [Pg.555]

Wang B, Sain M (2007) The effect of chemically coated nanofiber reinforcement on biopolymer based nanocomposites. Bioresources 2 371-388... [Pg.560]

Shofner ML, Lozano K, Rodriguez-Macias FJ, Barrera EV (2003) Nanofiber-reinforced polymers prepared by fused deposition modeling. J Appi Polym Sci 89(ll) 3081-3090. doi 10.1002/app. 12496... [Pg.206]

Molla S, Compan V (2011) Polyvinyl alcohol nanofiber reinforced nafion membranes for fuel cell applications. J Membr Sci 372 191-200... [Pg.272]


See other pages where Nanofibers reinforcement is mentioned: [Pg.355]    [Pg.293]    [Pg.8]    [Pg.135]    [Pg.562]    [Pg.189]    [Pg.332]    [Pg.333]    [Pg.5]    [Pg.14]    [Pg.325]    [Pg.333]    [Pg.654]    [Pg.130]    [Pg.423]    [Pg.462]    [Pg.558]    [Pg.173]    [Pg.265]   
See also in sourсe #XX -- [ Pg.165 ]




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