Advances in Diverse Industrial Applns of Nanocomposites by B. Reddy

By B. Reddy

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Liu, X. & Berglund, L. A. (2007). A high strength nanocomposite based on microcrystalline cellulose and polyurethane. Biomacromolecules, 8, 12, 3687-3692 Xu, Z. ; Tang, X. ; Gu, A. J. & Fang, Z. P. (2007). Novel preparation and mechanical properties of rigid polyurethane foam/organoclay nanocomposites. ; Yoshioka, M. & Shiraishi, N. (1995). Rigid polyurethane foams from combined liquefaction mixtures of wood and starch. Mokuzai Gakkaishi, 41, 7, 659-668 Zoppe, J. ; Peresin, M. ; Venditti, R. A.

It was found that microfibers with a relatively high aspect ratio nearly doubled the Young’s modulus and tripled the strength which far surpassed those observed for microfibers of modest aspect ratios. Although cellulose nano whiskers were not discussed, it proved that a high aspect ratio, one of the characteristics of whiskers, had a considerable positive effect on the improvement of mechanical properties. Green algae cellulose fibers of 500 to 600 µm in length and 20 to 200 µm in width were used to prepare a PU composite foam by Johnson & Shivkumar (2004).

2004). Preparation of cellulose whiskers reinforced nanocomposites from an organic medium suspension. ; Sanchez, J. Y. & Dufresne, A. (2004). Cross-linked nanocomposite polymer electrolytes reinforced with cellulose whiskers. ; Alloin, F. & Dufresne, A. (2005). Review of recent research into cellulosic whiskers, their properties and their application in nanocomposite field. Biomacromolecules, 6, 2, 612-626 Selim, I. ; Zikry, A. A. F. & Gaber S. H. (2004) Physicochemical properties of prepared cellulose sulfates: II.

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