DOI QR코드

DOI QR Code

Shear Performance Analysis of One-way Hollow Slab According to Shear Reinforcement

전단 보강 유무에 따른 일방향 중공슬래브의 전단 성능 분석

  • Received : 2014.05.01
  • Accepted : 2014.07.09
  • Published : 2014.11.30

Abstract

Hollow slab is a floor system which reduces the load of vertical structural members and earthquake load by decreasing self-weight of slab. Although hollow slab can reduce self-weight of slab remarkably, flexural strength and shear strength reduce due to the hollow section inside the slab, so it is very important to predict structural behavior. In spite of plenty of domestic and foreign studies on hollow slab, there is a shortage of research on shear performance according to shear reinforcement of one-way hollow slab. Therefore, this study aims to verify the need for shear reinforcement of one-way hollow slab by analyzing failure modes of one-way hollow slab depending on the state of shear reinforcement and comparing shear strengths of estimation formula and experimental value with one another.

중공슬래브는 슬래브의 자중을 감소시킴으로써 콘크리트 하중을 제어하여 수직 구조 부재 하중 및 지진 하중의 양을 감소시키는 바닥구조시스템이다. 중공슬래브는 슬래브의 자중을 획기적으로 줄일 수 있지만 슬래브 내부의 중공부로 인하여 휨 및 전단강도가 감소하기 때문에 구조 성능의 예측이 매우 중요하다. 중공슬래브에 관한 국내외의 많은 연구에도 불구하고 일방향 중공슬래브의 전단보강에 따른 전단강도에 관한 연구는 많이 이루어지지 않고 있다. 따라서 본 연구에서는 전단보강 유무에 따른 일방향 중공슬래브의 파괴양상 분석과 산정식의 전단강도와 실험값의 전단강도의 비교를 통하여 일방향 중공슬래브의 전단보강의 필요성에 대해 검증하고자 한다.

Keywords

References

  1. FUJIMOTO, T., and MORIMURA, T. (1985), Experimental Study on The One-way Reinforeced Concrete Hollow Slabs With Lateral Restraints, Journal of structural and construction engineering, AIJ, 357, 52-60. https://doi.org/10.3130/aijsx.357.0_52
  2. Han, J. H., Kim, S. D., Kim, S. M., and Ju, Y. K. (2011), Evaluation of Shear Behaviour of Void Slabs with Deck, Journal of Korean Society of Hazard Mitigation, Korean Society of Hazard Mitigation, 11(4), 1-7. https://doi.org/10.9798/KOSHAM.2011.11.4.001
  3. I. Rosenthal (1978), Full Scale Test of Continuous prestressed Hollow-core Slabs, PCI Journal, 115(11), 74-81.
  4. Kang, J. Y., Kim, H. G., Joo, E. H., Kim, S. M., Kim, H. S., and Shin, Y. S. (2011), Experimental Studies on the Effect of Construction Methods on Shear Strength of Hollow Core Slab, Proceeding of Korea Concrete Institute Conference, Korea Concrete Institute, 2011(5), 15-16.
  5. Kang, W. S., Kim, S. H., Lee, L. H., Kim, Y. N., and Kim, J. S. (2003), Structural Behaviors of Hollow Core Slab under Axial and Bending Loads, Proceeding of Autumn Annual Conference of the Architectural Institute of Korea Structure & Construction, Architectural Institute of Korea, 23(2), 43-46.
  6. KAWAI, M., and SATO, T. (2002), Experimental Study of Ultimate Strength of Hollow Slab with Partially Different Thickness, Bulletin of Hiroshima Institute of Technology, Research Volume 36, 75-80.
  7. Kim, B. H. (2011), Flexural capacity evaluation of hollow slabs with donut type hollow sphere shape, Hanyang University Graduate school, 1-2.
  8. Kim, K. C., Seok, K. Y., and Kang, J. W. (2013), Evaluation of Flexural Performance of One-Way Voided Slabs, Journal of Architectural Institute of Korea, Architectural Institute of Korea, 29(8), 11-18.
  9. Lee, J. I., Choi, H. S., and Kim, S. E. (1998), Experimental Study on Shear Behavior of One Way Circular Voided Concrete Slab, Bulletin of the Institute for industrial Science, 21(2), 1-8.
  10. Michael, P. C., Daniel, K. (1999), How Safe Our Large, Lightly Reinforced Concrete Beams, Slabs, and Footings?, ACI Structural Journal, American Concrete Institute, 96(4), 482-490.
  11. Oh, J. K., Sung, Y. Y., Ahn, J. M., Lee, K. S., and Shin, S. W. (1997), The Effects of Shear Span-to-Effective Depth Ratio of Reinforced High Strength Concrete Deep Beam, Journal of Korea Concrete Institute, Korea Concrete Institute, 9(5), 225-231.
  12. Pama, R. P., Imsom-Somboon, S., and Lee, S. L., Elastic Rigidities of Circularly Voided Slabs, Asian Institute of Technology, Elsevier, 10(3), 207-212.

Cited by

  1. Shear Capacity of Precast Concrete Triple Ribs Slab vol.28, pp.4, 2016, https://doi.org/10.4334/JKCI.2016.28.4.489
  2. Flexural Capacity of Precast Concrete Triple Ribs Slab vol.28, pp.1, 2016, https://doi.org/10.4334/JKCI.2016.28.1.003