DOI QR코드

DOI QR Code

Performance Evaluation of Prepackaged-Type Low Shrinkage Surface Preparation Materials Using a VA/E/MMA Terpolymer Powder

  • Hong, Sun-Hee (Graduate School, Hyupsung University) ;
  • Kim, Wan-Ki (Department of Architectural Engineering, Hyupsung University)
  • 투고 : 2011.09.16
  • 심사 : 2011.11.30
  • 발행 : 2012.02.20

초록

Recently, prepackaged-type surface preparation materials using redispersible polymer powders are widely used for interior and exterior finishing in the construction work. The purpose of this study is to evaluate the performance and the quality of prepackaged-type surface preparation materials using a VA/E/MMA terpolymer powder. Surface preparation materials using a VA/E/MMA terpolymer powder were prepared with shrinkage reducing agent contents of 0, 4 % and cellulose fiber contents of 0, 0.5, 1.0 %, and tested for drying shrinkage, strengths, adhesion in tension, crack and impact resistance, water absorption, permeability. As a result, prepackaged-type surface preparation materials show outstanding performance depending on the shrinkage reducing agent and cellulose fiber contents.

키워드

참고문헌

  1. Ohama Y, Ibe H, Mine H, Kato K. Cement Mortars Modified by SB Latexes with Variable Bound Styrene. Rubber Chemistry and Technology. 1964 July/September; 37(3):758-69. https://doi.org/10.5254/1.3540369
  2. Czarnecki L. Concrete-Polymer Composites: Overview. In: Lakshmanan N, Vaidyanathan CV, Ohama Y, Neelamegam M, editors. 5th Asian Symposium on Polymers in Concrete. Proceedings of the Fifth Asian Symposium on Polymers in Concrete; 2006 September 11-12; Structural Engineering Research Centre CSIR Campus, Chennai, India. Chennai (India): Allied Publishers; 2006. p. 87-104.
  3. Ohama Y, Demura K, Kim WK. Properties of Polymer-Modified Mortars Using Redispersible Polymer Powders. In: Yeon KS, Choi JD, editors. The First East Asia Symposium on Polymers in Concrete. Proceedings of the First East Asia Symposium on Polymers in Concrete; 1994 May 2-3; Kangwon National University, Chuncheon, Korea. Chuncheon (Korea): Kangwon National University; 1994. p. 81-90.
  4. Ohama Y. Handbook of Polymer-Modified Concrete and Mortars. 1st ed. New Jersey: Noyes Publications; c1995. 236 p.
  5. Walters DG. VAE Redispersible-Powder Hydraulic-Cement Admixtures. Concrete International. 1992 April;14(4):30-4.
  6. Hackel E, Beng P, Horler S. The use of redispersible polymer powders in concrete restoration. In: Stynes BW, editor. The production, performance & potential of polymers in concrete. Proceedings of the 5th International Congress on Polymers in Concrete; 1987 September 22-24; Brighton Polytechnic, Brighton, UK. Brighton (UK): Brighton Polytechnic; 1987. p. 305-8.
  7. Afridi MUK, Ohama Y, Demura K, Iqbal MZ. Development of Polymer Films by the Coalescence of Polymer Particles in Powdered and Aqueous Polymer-Modified Mortars. Cement and Concrete Research. 2003 November;33(11):1715-21. https://doi.org/10.1016/S0008-8846(02)01094-3
  8. Grosskurth KP, Konietzko A. Structural models of thermoplastic polymer additives in cement-bound construction materials. Kunststoffe Plast Europe. 1989; 79(5):23-6.
  9. Saand A, Ismail M, Sumadi SR. Influence of Prepackaged Polymer-Modified Mortar as a Modifier on Strength of Concrete. Journal of Applied Sciences. 2007 ;7(24):4023-27. https://doi.org/10.3923/jas.2007.4023.4027
  10. ACI Committee 548.3R-09. Report on Polymer-Modified Concrete. 1st ed. Farmington Hills (MI): American Concrete Institute; c2009. 40 p.
  11. Kim WK. Properties of Polymer-Modified Mortars Using a VA/E/MMA Terpolymer Powder. Journal of the Architectural Institute of Korea. 2010 July;26(7):111-18.
  12. Jung HS, Lee ST, Kim JP, Park KP, Kim SS. Evaluation of Durability of Cement Matrix Replaced with Ground Calcium Carbonate. Journal of the Korean Institue of Resources Recycling. 2006 June;15(3):74-80.
  13. Smith RH, Mills RH. Variations in the Shrinkage of Concrete Resulting from the Use of Additives. Proceedings of the RILEM/CEMBUREAU International Coloquium on the Shrinkage of Hydraulic Concretes; 1968 March; Instituto Eduardo Torroja, Madrid, Spain. Madrid (Spain): [publisher unknown]; 1968. P. II-G.0-II-G.15.
  14. Bentz DP, Aitcin PC. The Hidden Meaning of Water-Cement Ratio. Concrete International. 2008 May; 30(5):51-4.
  15. Halamickova P, Detwiler RJ. Water Permeability and Chloride Ion Diffusion in Portland Cement Mortars: Relationship to Sand Conctent and Critical Pore Diameter. Cement and Concrete Research. 1995 May;25(4):790-802. https://doi.org/10.1016/0008-8846(95)00069-O