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⵵/ȣ 1997 / ȣ: V.9,no.3,Jun
1() ڷγ ó ׸ P/C ȥ ձȭ (II) - ȭ -
2(Ÿ) Multi-Functional Finish of Polyester and P/C blend Fabrics by Corona Discharge(II) - Multifunctional finish-
() Lee, Bang One (Dept. of Textile Eng., College of Eng., Chonbuk National Univ., Chonju, 561-756, Korea) Pak, Pyong Ki (Dept. of Textile Eng., College of Eng., Chonbuk National Univ., Chonju, 561-756, Korea) Yeo, Joo Hong (Dept. of Natural Fiber Sci., Colle
(Ÿ) Lee, Bang One (Dept. of Textile Eng., College of Eng., Chonbuk National Univ., Chonju, 561-756, Korea) Pak, Pyong Ki (Dept. of Textile Eng., College of Eng., Chonbuk National Univ., Chonju, 561-756, Korea) Yeo, Joo Hong (Dept. of Natural Fiber Sci., Colle
Ҽ() Lee, Bang One (Dept. of Textile Eng., College of Eng., Chonbuk National Univ., Chonju, 561-756, Kore
Ҽ(Ÿ) Lee, Bang One (Dept. of Textile Eng., College of Eng., Chonbuk National Univ., Chonju, 561-756, Kore
/ 1 ~ 9 : 9
() Korean
ʷ Plasma techniques permit modification of the surface layers of the substrate while maintaining its bulk properties. The use of plasma treatment on textile fibers and fabrics is very limited, however, the limitations, plasma treatments have been used to modify surface properties of textiles. In this study, multifunctional finish was performed by corona discharge technique for surface functionalization. Electron spectroscopy for chemical analysis(ESCA) was used to determine the ratios of carbon, oxygen, nitrogen, and phosphor at a 20 sampling depth. K/S value and limiting oxygen index(LOI) value were used to obtain information on the effect of the finished fabrics. The mechanism of the flame retardancy was analyzed by the thermogravimetry-and the residue number. In ESCA, relative N1s intensity increased in case of mixtrure. The flame retardancy of the polyester and polyester/cotton fabrics treated with JA-6034 and JA-6050 was found to be operative mainly in the condensed phase mechanism. The multifunctional finish was better effect for the post treated finish agent.
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