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⵵/ȣ 1995 / ȣ: V.7,no.2,Jun
1() PAN ȣ öչڸ
2(Ÿ) Protective Thin Films on PAN Fiber for Water Resistant Modification by Plasma Polymerization
() Seo, Eun Deock (Dept. of Chemical Eng., Kyungnam Univ., Masan, Korea) Kang, Young Reep (Dept. of Chemical Eng., Kyungnam Univ., Masan, Korea) Kim, Jung Dal (Dept. Electrical Eng., Kyungnam Univ., Masan, Korea)
(Ÿ) Seo, Eun Deock (Dept. of Chemical Eng., Kyungnam Univ., Masan, Korea) Kang, Young Reep (Dept. of Chemical Eng., Kyungnam Univ., Masan, Korea) Kim, Jung Dal (Dept. Electrical Eng., Kyungnam Univ., Masan, Korea)
Ҽ() Seo, Eun Deock (Dept. of Chemical Eng., Kyungnam Univ., Masan, Korea) Kang, Young Reep (Dept. of Che
Ҽ(Ÿ) Seo, Eun Deock (Dept. of Chemical Eng., Kyungnam Univ., Masan, Korea) Kang, Young Reep (Dept. of Che
/ 55 ~ 62 : 8
() Korean
ʷ Plasma polymerization of Perfiuoropropene(PFP) and n-Hexane was carried out in a tubular type reactor by means of 13.56MHz radio frequency generator at the fixed RF discharge power of 25W and at the pressures of 100mTorr, 140mTorr and 200mTorr. The thin films were deposited on PAN fabrics in order to improve the dimemsional stability of woven states in hot water laundry. IR spectroscopy was used for the analysis of the structures of the thin films deposited and SEM for examination of surfaces of the fabrics. the PAN fabrics, which were coated by thin films at several experimental conditions, were immersed in boiling water for 2 hours and then the dimension stability of woven states were evaluated. In spite of very thin films, the results of surface modification were satisfactory. In general the performace of thin films by PFP was superior to that of n-Hexane
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