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논문 기본 정보

자료유형
학술저널
저자정보
Lu, Y.H. (School of Material Engineering, Suzhou University) Lin, H. (School of Material Engineering, Suzhou University) Chen, Y.Y. (School of Material Engineering, Suzhou University) Wang, C. (School of Material Engineering, Suzhou University) Hua, Y.R. (School of Material Engineering, Suzhou University)
저널정보
한국섬유공학회 Fibers and Polymers Fibers and polymers 제8권 제1호
발행연도
2007.1
수록면
1 - 6 (6page)

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Bombyx mori(B. mori) silk was modified with the nano-$TiO_2$ and chitosan dispersion system by the cross linking reactions of citric acid(CA) and maleic anhydride(MA). The average size of the nano-$TiO_2$ particles in the aqueous dispersion system was 36.7 nm. The scanning electron microscopy(SEM) micrographs showed that the nano-$TiO_2$ particles were spherical and homogeneously dispersed in the dispersion system, and the surface of B. mori silk fiber treated with the nano-$TiO_2$ and chitosan dispersion system was rougher than that of the untreated one. X-ray diffraction(XRD) and Fourier transform infrared(FT-IR) Spectrometry indicated that the crystallinity of the B. mori silk fiber increased after treatment. It was also found that the nano-$TiO_2$ and chitosan contributed to significantly enhance the mechanical properties including breaking strength, breaking elongation, initial modulus, rupture work, and elastic recovery property of the B. mori silk fiber. The wrinkle-resistant performance of the treated B. mori silk fabrics was also greatly improved.

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