Preparation and Properties of Autoxidation Drying Type Waterborne Coatings Containing Bentonite

벤토나이트가 포함된 자동산화 건조형 수성코팅제의 제조 및 특성

  • 이석기 (경일대학교 공업화학과) ;
  • 구광모 (경북대학교 무기재료공학과) ;
  • 이병교 (경북대학교 무기재료공학과)
  • Published : 2001.11.01

Abstract

Four different composition of autoxidation drying type waterborne coatings (WBC-1, WBC-2, WBC-3, WBC-4) were prepared by the compounding of bentonite (BEN) as a water swellable clay and organometallic soaps as a drier with acrylic binder and coating additives. The solution viscosity, solid content, rheological properties and drying rate of WBCs were investigated. Also the thermal stability, the transmittance and the water-resistance of the films casted by WBCs were measured, and the surface topology of WBC films were investigated by the scanning probe microscopy. As WBC-2, WBC-3 and WBC-4 containing BEN showed the thixotropy with the shear rate, the storage stability of WBC was a excellent. When the driers was mixed in the ratio of Mn/Zn/Ba=1/2/3, the dry ability of WBCs showed maximum as 5.0 sec at 60$\^{C}$. The initial decomposition temperature and the transmittance of WBC films containing BEN increased in range of 32.2∼54.7$\^{C}$ and 5.1∼8.6% than the commercial WBC (MC-21W), respectively. The water resistance of WBC films increased in order of MC-21W

수팽윤성 점토로서 벤토나이트(BEN), 유기금속 비누계 건조제, 아크릴계 바인더 및 코팅첨가제들을 배합하여 서로 성분이 다른 자동산화 건조형 수성코팅제(WBC-1, WBC-2, WBC-3, WBC-4) 4종류를 제조하였다. 제조한 수성코팅제(WBC)의 용액점도, 고형분, 유동학적인 성질 및 자동산화 건조성을 조사하였다. 또한 주조된 WBC 필름의 열안정성, 투명성 및 내수성을 측정하였고, WBC 필름의 표면형상을 주사탐침현미경으로 조사하였다. BEN이 포함된 WBC-2, WBC-3 및 WBC-4는 전단력에 따라 요변성이 나타남으로서 WBC의 저장안정성이 우수하였다. 자동산화형 WBC의 건조성은 건조제가 Mn/Zn/Ba=1/2/3의 비로 혼합되었을 때, 6$0^{\circ}C$에서 5초로서 최대치를 나타내었다. 또한 BEN이 포함된 WBC 필름의 초기분해온도와 투명성은 시판 WBC(MC-21W)의 필름보다 32.2~54.7$^{\circ}C$와 5.1~8.6%의 범위로 증가하였고, WBC 필름의 내수성은 MC-21W

Keywords

References

  1. Morden Coating and Drying Technology D. J. Coyle
  2. Coating and Drying Defects G. I. Kheboian
  3. Polym. Paint Colour J. The Effect Of Driers in Water-borne, Oxidatively Drying Surface Coatings J. H. Bieleman
  4. Water-borne Coatings K. Doren;W. Freitag;D. Stoye
  5. J. Appl. Polym. Sci. v.74 Studies on Acrylate Copolymer Soap-free Waterborne Coatings Crosslinked By Metal Ions L. Yang;Z. Xie;Z. Li
  6. European Coatings Handbook T. Brock;M. Goteklaes;P. Mischke
  7. Clay Minerals v.8 The Formation of Stable Sols from Laponite B. S. Neumann;K. G. Sansom
  8. Ciays and Clay Minerals in Nature and Synthetic Systems B. Velde
  9. Formation and Properties of Clay-polymer Complexes B. K. G. Theng
  10. U. S. Patent 4,514,510 Hydrogen Enriched Water Swellable Clay Having Reduced Acid Demand and Stable at Low W. Alexander;N. Ⅲ
  11. Polymer-Clay Nano-composites T. J. Pinnavaia;G. W. Beall
  12. J. Kor. Ceram. Soc. v.11 no.2 Improvement of Adsorbability of Methylene Blue on Bentonite Treated with Electrolyte Solution B. S. Shin;M. S. Kim
  13. J. Kor. Ceram. Soc. v.21 no.1 Synthesis of Organo-montmorillonite by Intercalation Reaction and Its Kinetic Study C. E. Kim;J. H. Choy;K. W. Hyung
  14. J. Kor. Ceram. Soc. v.35 no.2 Rheological Behavior of Coal-fly-ash and Clay Slip K. G. Lee;C. J. Park;Y. T. Kim;S. B. Kim;J. H. Kim
  15. J. Kor. Ceram. Soc. v.37 no.12 Synthesis and Characteristics of Hectorite Clay by Hydrothermal Process S. K. Lee;K. M. Koo;J. H. Lee;B. K. Lee
  16. J. Kor. Ceram. Soc. v.38 no.2 Preparation of Heat-resistance Waterborne Coatings Synthetic Hectorite Clay S. K. Lee;B. K. Lee
  17. An Introduction to Clay Colloid Chemistry(2nd Ed.) H. Van Olphen
  18. Colloid-polymer Interaction R. S. Farinato;P. L. Dubin