DOI QR코드

DOI QR Code

Evaluation of Cracking Strength of Floating Floor System

뜬바닥구조의 균열강도 평가

  • 이정윤 (성균관대학교 건축토목공학부) ;
  • 이범식 (LH공사 토지주택원구원) ;
  • 전명훈 (LH공사 토지주택원구원 건설환경연구실) ;
  • 김종문 (성균관대학교 글로벌건설엔지니어링학과)
  • Received : 2014.06.28
  • Accepted : 2014.09.15
  • Published : 2015.01.30

Abstract

This paper reports the test results of the floating floor system used to reduce the floor noise of apartment buildings. Recently, many soft resilient materials placing between the reinforced concrete slab and finishing mortar are used. The resilient material should not only reduce the floor impact sound vibration from the floor but also support the load on the floor. Thus, even if soft resilient materials satisfy the maximum limitation of light-weight impact sound and heavy-weight impact sound, these materials may not support the load on the floor. The experimental program involved conducting sixteen sound insulation floating floor specimens. Three main parameters were considered in the experimental investigation: resilient materials, loading location, and layers of floor. Experimental results indicated that the stiffness of resilient material significantly influenced on the structural behavior of floating floor system. In addition, the deflection of the floating concrete floor loaded at the side or coner of the specimen was greater than that of the floor loaded at the center of the specimen. However, the aerated concrete did not effect on the cracking strength of floating floor system.

이 연구에서는 층간소음을 억제하기 위하여 사용되는 뜬바닥구조의 구조거동을 실험을 통하여 평가하였다. 최근 층간소음을 억제하기 위하여 연질의 완충재가 사용되며, 이로 인하여 마감모르타르나 기포콘크리트에 균열이 발생할 가능성이 높아지고 있다. 이 연구에서는 완충재의 강성, 하중가력 위치, 바닥 구성층을 변수로 하는 16개의 2방향 뜬바닥구조를 실험하였다. 실험에 의하면 완충재의 강성은 뜬바닥구조의 균열강도에 큰 영향을 미치며 완충재의 할선계수가 0.2MPa인 경우에 낮은 강도에서 균열이 발생하였다. 또한 슬래브의 단부나 모서리에 하중이 가력될 경우에 균열강도가 감소하였다. 뜬바닥구조를 이루고 있는 마감모르타르는 균열강도에 영향을 주었지만 기포콘크리트는 균열강도에 영향을 주지 않았다.

Keywords

References

  1. Hong, G. H., Park, H. G., and Hwang, J. S. (2007), An Experimental Study on the Performance of Heavy-Weight Floor Impact Noise of Hollow Core Slab, Proceeding of Annual Conference of the Architectural Institute of Korea, 27(1), 901-904.
  2. Housing and Urban Research Institute (HURI) (2005), A Study on the Development of the Structural Analysis Method for floor heating system with Sound Insulation, Technical Report, Seoul, Republic of Korea, 134.
  3. Jang, J. H. (2002), A Study on the Reduction Effects of Floor Impact Noise Insulators in Apartment Houses, Journal of the Architectural Institute of Korea, 18(4), 205-212.
  4. Kim, K. W., Jeong, G. C., and Sohn, J. Y. (2008), Evaluation of the Dynamic Stiffness and Heavy-weight Floor Impact Sound Reduction by Composition of Resilient Materials, The Korean Society for Noise and Vibration Engineering, 18(2), 247-254. https://doi.org/10.5050/KSNVN.2008.18.2.247
  5. Kim, M. J., Park, J. M., Kim, O. K., Seo, D. S., and Choi, J. H. (2011), Technical Analysis on the Noise Defect Dispute on Apartment House, Proceeding of Spring Annual Conference of the Architectural Institute of Korea-Planing and Design, 31(1), 161-162.
  6. Kim, M. J., Sohn, J. Y., and Kim, H. S. (1998), An Experimental Study on the Effect Factors of Floor Impact Sound Performance for Apartment Housing, Journal of the Architectural Institute of Korea Planing and Design, 14(9), 167-178.
  7. Kim, S. W., Hwang, H. B., Hwang, H. S., Lee, K. J., Lee, D. G., and Lee, J. Y. (2009), Experimental Study on the Flexural Capacity of Biaxial Hollow Reinforced Concrete Half Slabs, Journal of the Architectural Institute of Korea - Structure and Construction, 25(8), 11-18.
  8. Lee, B. S., Jun, M. H., and Lee, J. Y. (2013), Influencing Factors of the Deflection of Floor Sound Insulation Systems, Journal of the Architectural Institute of Korea - Structure and Construction, 29(12), 37-44.
  9. Lee, S. S., Hong, S. Y., Park, K. S., Heo, B. W., and Bae, K. W. (2012), Developing Technologies for the Unit Modular Lightweight Composite Floor Structural System to Prevent Interlayer Noise, Proceeding of Spring Annual Conference of the Architectural Institute of Korea, 32(1), 101-102.
  10. Park, H. J., Park, Y. K., Choi, B. T., and Lee, D. G. (2009), Evaluation of Seismic Behavior of Biaxial Hollow Slab Structure, Proceeding of Annual Conference of the Architectural Institute of Korea - Structure and Construction, 29(1), 61-64.
  11. Yu, Y. D., Seo, H. S., and Lee, J. I. (2006), A Study on Impact Sound Performance of the Ceiling System in the High-rise Apartment Buildings, Proceeding of Annual Conference of the Architectural Institute of Korea, 28(1), 717-720.

Cited by

  1. Evaluation on Expectation of Deflection of Floor Damping Materials Subjected to Long-Term Load vol.20, pp.4, 2016, https://doi.org/10.11112/jksmi.2016.20.4.019