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An Analysis of Insulation and construction performance of Surface-enhanced Cement-Based Insulation for Condensation Prevention

표면 강화 시멘트계 결로방지 단열재의 단열 및 시공성능 분석

  • Kim, Hye-Yeon (Housing & Building Business Division, DL E&C, Dept. of Architectural Engineering, Chung-Ang University)
  • 김혜연 (디엘이앤씨 주택사업본부, 중앙대 건축공학과)
  • Received : 2022.03.08
  • Accepted : 2022.07.25
  • Published : 2022.08.30

Abstract

The purpose of this study is to analyze the insulation performance and construction performance of the surface-enhanced cement-based insulation for condensation prevention('the developed composite insulation') developed to solve the problems of the insulation for condensation prevention constructed as substrate according to the finishing method. In order to analyze the insulation performance, a thermal conductivity test of the material and a heat transfer analysis of the part of apartment plane were performed. In order to analyze the construction performance, experiments were designed and conducted according to the finishing method. As a result of the experiment, it was confirmed that unlike the insulating mortar used on the tile substrate, the developed composite insulation has legal standard insulation performance. It was confirmed that the developed composite insulation has adhesion strength and construction stability to tiles. It was confirmed that the developed composite insulation also had adhesion strength of the wallpaper/putty and the adhesion strength against twisting. In addition, it was confirmed that the developed composite insulation has waterproof capacity and construction stability.

Keywords

References

  1. Kim, K.S., Lee, D.B., Lee, J.H., & Park, H.S. (2000). A Study on Evaluation of Insulation & Condensation Performance in Corners of Building Envelops, Journal of the Architectural Institute of Korea, 16(9), 163-168.
  2. Korea Agency for Technology and Standards (KATS). (2017). Adhesives - Peel test for a flexible-bonded-to-rigid test specimen assembly - Part 2: 180° peel(KS M ISO8510-2). Korea Standard Association (KSA)
  3. Korea Agency for Technology and Standards (KATS). (2019). Insulating mortar(KS F 4040). Korea Standard Association (KSA)
  4. Korea Agency for Technology and Standards (KATS). (2021). Cellular polystyrene for thermal insulation(KS M 3808). Korea Standard Association (KSA)
  5. Korea Land & Housing corporation (LH). (2020). Korea Land & Housing Corporation Construction Specification (LHCS) 41 48 01, Ministry of Land, Infrastructure and Transport (MOLIT), Korea Land & Housing corporation (LH), 17.
  6. Lee, H.N., Kwon, S.W., Cheon, S.M., & Jeong, Y. (2017). An Experimental Study on Performance of Condensation Prevention Insulation Mortar. Proceedings of the Korea Concrete Institute, 29(1), 467-468.
  7. Lee, S.H., & Chung, M.H. (2019). A Design Improvement for Insulation and Condensation Prevention by the Case Studies in Apartment Buildings - Focused on The Viewpoint of The Designer. Journal of Korea Institute of Ecological Architecture and Environment, 19(4), 61-66.
  8. Ministry of Land, Infrastructure and Transport (MOLIT). (2014). Detailed Guidelines for Preventing Condensation in Apartment Houses, MOLIT, 5.
  9. Shin, M.S., & Rhee, K.N. (2021). Investigation of Heating Energy Reduction Performance by Supplementary Insulation for Condensation Prevention in Apartment Buildings, Journal of Korea Institute of Architectural Sustainable Environment and Building Systems, 15(1), 52~62.
  10. Song, S.Y., Koo, B.K., & Choi, B.H. (2008). Insulation Performances of the Typical Floor's Front Wall-slab and Side Wall-slab Joints of Apartment Buildings with Internal and External Insulation Systems. Journal of the Architectural Institute of Korea, 24(8), 277-284.