The analysis of surface degradation on polymer material by contact angle properties

접촉각 특성을 이용한 고분자복합재료의 표면열화 해석

  • Published : 2002.09.01

Abstract

UV, heat, and discharge treatments are arbitrary simulated for finding out the initiations and processes of surface degradation on the polymer surface. Especially, this study is focused on the inter-relation between chemical changes and electrical properties. In contact angle to measure the change of activated degree, that of polymers surface shows a slight hydrophobicity of 73$^{\circ}$~91$^{\circ}$. But, discharge treatment and UV treatment of 300 nm wavelength changed it to the hydrophilic one with the decrease of contact angle, 13.8$^{\circ}$ and 20$^{\circ}$ respectively. Thermal-treatment and UV treatment of 430~500 nm wavelength changed the surface to the hydrophobic one with the increase of contact angle, 90$^{\circ}$ and 80.1$^{\circ}$ respectively.  

본 연구는 고분자 재료의 표면열화 발생 및 진행경로를 해석하기 위한 일환으로 열, 자외선 및 방전에 의한 열화를 각각 임의로 모의하여 접촉각 특성을 측정하여 열화 발생메커니즘을 해석하였으며, 특히 기존의 열화 연구와 달리 화학적 측면과 정전적 측면을 연계시킨 상관적 특성분석을 수행하였다. 표면활성화 상태를 측정한 접촉각 변화에 있어서, 일반적인 고분자의 표면은 73$^{\circ}$~91$^{\circ}$의 약소수성을 나타낸다. 그러나, 방전처리 및 350 nm 이하의 자외선 파장에 노출된 표면은 13.8$^{\circ}$ 및 20$^{\circ}$로 급격한 친수화를 나타내었고, 열처리 및 430~500nm 파장의 가시광 파장에 노출된 표면은 90$^{\circ}$와 80.1$^{\circ}$의 최대 접촉각 상승을 보이며 소수화를 나타냈다.

Keywords

References

  1. 廣惠章利, 本吉正信, 'プラスチック物性入門, 第2版' pp.178-186, 1984
  2. 松岡良輔靜, 石原正道, '送配電用ポリマ-がいしの開發', 電氣學會誌, Vol.18, No.4, pp. 347-354, 1994
  3. Chung-Hoo Park, 'A Study of the Dielectric and Mechanical Properties Interactions of Glass Cloth/Epoxy Composites', IEEE EI, Vol.22, pp.389-395, 1987
  4. 筏 義人, 松永忠与, 鈴木昌和, '高分子表面上の極性基の反轉', 日本化學會誌, Vol.6, pp.1079-1086, 1985
  5. S. Halim Hamid, Mohamed B. and Ali G. Maadhah, 'Handbook of Polymer Degradation', Marcel Dekker, pp.3-27, pp.219-261, 1992
  6. Melvin J. Swanson and Gary W. Opperman, 'Photochemical Surface Modification of Polymers for Improved Adhesion', Polymer Surface Modification : Relevance to Adhesion, K. L. Mittal(ed.), VSP, pp.319-325, 1995
  7. K. Matsushita, N. Suzuki, S. Okuyama and K. Okuyama, 'Hydrophobicity of a hydrochlorictreated GaAs surface analyzed by contact angle measurement', J. Electrochem. Soc., Vol.145, No. 4, pp.1381-1384, 1998 https://doi.org/10.1149/1.1838469
  8. H. Z. Syed and R. Hackam, 'Effects of water salinity, Electrical stress and temperature on the hydrophobicity of polytetrafluoroethylene', Proceedings of the 1998 Annual Report Conference on Electrical Insulation and Dielectric Phenomena - Vol.1, pp.100-103, 1998
  9. Micheal L. Owen and Patrick J. Smith, 'Plasma treatment of polydimethylsiloxane', Polymer Surface Modification : Relevance to Adhesion, K. L. Mittal(ed.), VSP, pp.319-325, 1995
  10. O. D. Greenwood, R. D. Boyd, J. Hopkins, and J. P. S. Badyal, 'Atmospheric silent discharge versus low-pressure plasma treatment of polyethylene, polypropylene, polyisobutylene, and polystylene', Polymer Surface Modification : Relevance to Adhesion, K. L. Mittal(ed.), VSP, pp. 17-32, 1995