DOI QR코드

DOI QR Code

The Dispersibility and Adsorption Behaviour of Cement Paste with Molecular Structures of Polycarboxylates

폴리카복실레이트 분자 구조에 따른 시멘트페이스트의 분산 및 흡착 특성 연구

  • Shin, Jin-Yong (Applied Chemistry & Engineering Div., Korea Research Institute of Chemical Technology) ;
  • Hong, Ji-Sook (Applied Chemistry & Engineering Div., Korea Research Institute of Chemical Technology) ;
  • Suh, Jeong-Kwon (Applied Chemistry & Engineering Div., Korea Research Institute of Chemical Technology) ;
  • Lee, Young-Seok (Dept. of Fine Chemical Engineering & Chemistry, Chungnam National University) ;
  • Hwang, Eui-Hwan (Dept. of Chemical Engineering, Kongju National University)
  • Published : 2006.08.31

Abstract

Graft copolymerized polycarboxylate(PC)-type superplasticizers which have carboxylic acid with $\pi$ bond among the molecular structure and polyethyleneglycol methyl ether methacrylate(PMEM) were synthesized by free radical reaction. To investigate their chemical structures and molecular weights, PCs were analyzed by FT-IR(fourier transform spectrometer), C-NMR(nuclear magnetic resonance spectrometer) and GPC(gel permeation chromatograpy). When types of carboxylic acids(methacrylic acid, acrylic acid, maleic anhydride, and itaconic acid) and molar ratios of carboxylic acid/PMEM) were varied, adsorptive and fluid characteristics in cement paste were discussed. As the molar ratio of carboxylic acid/PMEM) was higher, amount adsorbed on the cement particles and the fluidity of cement paste by mini-slump spread testing method were increased. When main chain of PC was methacrylic acid, a larger amount was adsorbed on the cement particles. PCs with acrylic acid as main chain showed higher dispersing power. However, it was confirmed that PCs with dicarboxylic acids(maleic anhydride, itaconic acid) didn't have good adsorption and dispersibility.

분자 구조 중 $\pi$ 결합을 갖고 있는 카복시산과 폴리에틸렌글리콜 메틸에테르 메타크릴레이트(PMEM)를 자유 라디칼 반응에 의해 그라프트 공중합된 폴리카복실레이트(PC)계 고유동화제를 합성했고, FT-IR, $^{13}C-NMR$, 그리고 GPC를 활용하여 합성된 PC의 화학 구조 및 분자량을 조사했다. 4종의 카복시산(메타크릴산, 아크릴산, 무수말레인산, 그리고 이타콘산)과 [카복시산]/[PMEM]의 몰비를 변수로 시멘트페이스트에 적용한 결과, [카복시산]/[PMEM]의 몰비가 높을수록 시멘트 입자 상에 흡착량과 시멘트페이스트 유동성은 증가했다. 흡착량은 메타크릴산을 적용한 PC가 가장 높았고, 유동성은 아크릴산을 구조에 적용했을 때 가장 우수했다. 그러나 무수말레인산과 이타콘산을 주쇄로 사용한 경우 흡착 및 유동 특성이 좋지 않았다.

Keywords

References

  1. Hanehara, S. and Yamada, Kazuo., 'Interaction between cement and chemical admixture from the point of cement hydration, absorption behaviour of admixture, and paste rheology', Cement and Concrete Research, Vol.29, 1999, pp.1159-1165 https://doi.org/10.1016/S0008-8846(99)00004-6
  2. Kinoshita, M., Yonezawa, T., and Yuki, Y, 'Chemical structure and formance of a new type high water reducing agent for ultra high strength concrete', Semento, Konkurito Ronbunshu, Vol.47, 1993, pp.196-201
  3. Cho, H. Y., Suh, J. M., 'Effects of synthetic conditions of poly {carboxylate-g-( ethylene glycol) methyl ether} on the dispersibility in cement paste', Cement and Concrete Research, Vol.35, 2005, pp.891-899 https://doi.org/10.1016/j.cemconres.2004.07.002
  4. Papayianni, I., Tsohos, G, Oikonomou, N., and Mavria, P., 'Influence of superplasticizer type and mix design parameters on the performance of them in concrete mixtures', Cement and Concrete Composites, Vol.27, 2005, pp.217-222 https://doi.org/10.1016/j.cemconcomp.2004.02.010
  5. Tseng, Y. C., Wu, W. L., Huang, L., Wang, C. T., and Hsu, K. C., New carboxylic acid-based super plasticizer for highperformance concrete, Superplasticizers and other chemical admixtures in concrete, SP-195, 2000, pp.401-414
  6. Goaszewski, J. and Szwabowski, J., 'Influence of superplasticizers on rheological behaviour of fresh cement mortars', Cement and Concrete Research, Vol.34, 2004, pp.235-248 https://doi.org/10.1016/j.cemconres.2003.07.002
  7. Kantro, D. L., 'Influence of water reducing admixtures on properties of cement paste-miniature slump test', Cement Concrete Aggregate, Vol.2, 1980, pp.56-67
  8. Donald, H., Napper, Polymeric stabilization of colloidal dispersions, Academic Press, New York, USA, 1983, pp.89-104
  9. George Odian, Principle of polymerization, forth edition, Wiley Interscience, 2004, pp.209-236
  10. Yamada, K., Takahashi, T., Hanehara, S., and Matschisa, M., 'Effects of chemical structure on the properties of polycarboxylate-type superplasticizer', Cement and Concrete Research, Vol.30, 2000, pp.197-207 https://doi.org/10.1016/S0008-8846(99)00230-6
  11. Jerry March Advanced organic chemistry, 4th Edition John Wiley & Sons, Inc., 1992, pp.393-405
  12. Li, C, Z., Feng, N. Q., Li, Y. D., and Chen, R. H., 'Effect of polyethylene oxide chains on the performance of polycarboxylate-type water-reducers', Cement and Concrete Research, Vol.35, 2004, pp.867-873 https://doi.org/10.1016/j.cemconres.2004.04.031
  13. Yoshioka, K., Tazawa, E. 1., Kawai, K., Enohata, T., 'Adsorption characteristics of superplasticizers on cement component minerals', Cement and Concrete Research, Vo.32, 2002, pp.1507-1513 https://doi.org/10.1016/S0008-8846(02)00782-2