Surface Characteristics of Wool and Poly ( ethylene Terephthalate) Fabrics and Film Treated with Low-Temperature Plasma Under Atmospheric Pressure

Author:

Wakida Tomiji1,Tokino Seiji1,Shouhua Niu 1,Kawamura Haruo1,Sato Yukihiro2,Lee Muncheul3,Uchiyama Hiroshi4,Inagaki Hideo4

Affiliation:

1. Department of Chemistry and Materials Technology, Kyoto Institute of Technology, Matsugasaki, Sakyoku, Kyoto 606, Japan

2. Osaka Prefectural Industrial Technology Research Institute, Enokojima, Nishiku, Osaka 505, Japan

3. Department of Clothing and Textiles, Kyungsung University, Namku, Pusan 608, Republic of Korea

4. E. C. Chemical Co. Hirakata, Osaka 573-01, Japan

Abstract

Wool and poly ( ethylene terephthalate) fabrics and film were treated with low-tem perature plasmas of helium/argon or acetone/argon under atmospheric pressure for 10 to 180 seconds. Although argon itself cannot independently generate a plasma under atmospheric pressure by applying high frequency voltage, it is easily generated by adding a small quantity of helium or acetone to argon gas. Wettability of the fabrics and surface tension of the film increased considerably with the treatment within 30 seconds. ESCA analysis was used to elucidate the surface chemical composition of fibers treated with atmospheric low-temperature plasma. Relative O1 s intensity in creased considerably and oxygen was incorporated in the form of —CO— and —COO— on the fiber surface. From these results, it appears that low-temperature plasma by atmospheric pressure discharge is effective for modifying the polymer surface, as it acts in the same fashion as low-temperature plasma by glow discharge.

Publisher

SAGE Publications

Subject

Polymers and Plastics,Chemical Engineering (miscellaneous)

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