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Shear Strength Equation for Slender Diagonally Reinforced Coupling Beam

세장한 대각보강 연결보의 전단강도 예측식

  • Received : 2016.05.17
  • Accepted : 2016.07.01
  • Published : 2016.11.01

Abstract

Coupling beams serve as primary source of energy dissipation in coupled shear wall systems during large earthquakes. However, the overestimation of the shear strength of diagonally reinforced coupling beams may be adverse effect on the seismic performance of coupled shear wall systems. In order to force coupling beams to properly work during earthquakes, coupling beams should be designed with accurate shear strength equations. The objective of this study is to propose the accurate shear strength equation for slender diagonally reinforced coupling beams. For this purpose, experimental tests were conducted using three diagonally reinforced coupling specimens with different amount of transverse reinforcement under reversed cyclic loads to evaluate the hysteretic behavior of the specimens. The test results show that transverse reinforcement of slender diagonally reinforced coupling beam affects the maximum strength and drift ratio.

Keywords

References

  1. Paulay T, Priestley MJN. Seismic design of reinforced concrete and masonry buildings. John Wiley & Sons, New York; c1992. 744 p.
  2. Berg GV, Stratta JL. Anchorage and the Alaska earthquake of March 27, America Iron and Steel Institute; c1964.
  3. Paulay T, Binney JR. Diagonally reinforced concrete beams of shear walls. ACI special publication. c1974;42:579-598.
  4. Barney GB, Shiu KN, Rabbat BG, Fiorato AE, Russell HG, Corley WG. Behavior of coupling beams under load reversals: Portland Cement Association; c1980.
  5. Tassios TP, Moretti M, Bezas A. On the behavior and ductility of reinforced concrete coupling beams of shear walls. ACI Structural Journal. 1996;93(6):711-720.
  6. Galano L, Vignoli A. Seismic behavior of short coupling beams with different reinforcement layouts. ACI Structural Journal. 2000;97(6):876-885.
  7. Fortney PJ. The Next Generation of Coupling Beams. PhD. University of Cincinnati, Ohio, USA; c2005. 346 p.
  8. Canbolat BA, Parra Montesinos GJ, Wight JK. Experimental study on seismic behavior of high performance fiber reinforced cement composite coupling beams. ACI Structural Journal. 2005;102(1):159-166.
  9. ACI Committee 318. Building Code Requirements for Structural Concrete and Commentary. American Concrete Institute; c2014. 519 p.
  10. Naish D, Wallace JW, Fry JA, Klemencic R, Reinforced concrete link beams: Alternative details for improved construction , UCLA-SGEL Report 2009-06, Structural & Geotechnical Engineering Laboratory: University of California at Los Angeles; c2009. 103 p.
  11. Shin MS, Gwon SW, Lee KH, Han SW, Jo Yw. Effectiveness of high performance fiber-reinforced cement composites in slender coupling beams. Construction and Building Materials. c2014;68:476-490. https://doi.org/10.1016/j.conbuildmat.2014.06.089
  12. Han SW, Lee CS, Shin MS, Lee KH. Cyclic performance of precast coupling beams with bundled diagonal reinforcement. Engineering Structures. c2015;(93):142-151.
  13. Binney JR. Diagonally reinforced coupling beams. MS Thesis. University of Canterbury, Christchurch, New Zealand; c1972. 131 p.
  14. Han SW, Yu KH. Kang DH, Lee KH, Shin MS. Cyclic Behavior of Precast Slender Coupling Beams with Bundled Diagonally Reinforcement and High-Performance Fiber Reinforced Cementitious Composite (HPFRCC). EESK Journal of Earthquake Engineering. c2015;19(2):56-62.
  15. Korea Concrete Institute. Concrete Design Code and Commentary, Kimoondang Publishing Company, Seoul, Korea; c2012. 342 p.
  16. Harries KA, Fortney PJ, Shahrooz BM, Brienen PJ. Practical design of diagonally reinforced concrete coupling beams critical review of ACI 318 requirements. ACI Structural Journal. 2005;102(6):876-882.
  17. Pan A, Moehle JP. Lateral displacement ductility of reinforced concrete flat plates. ACI Structural Journal. 1989;86(3):250-258.
  18. American Society of Civil Engineers(ASCE). Seismic rehabilitation of existing buildings. ASCE/SEI 41-13, Reston, VA; c2013. 518 p.
  19. Emilio G. Seismic Response of Diagonally Reinforced Slender Coupling Beams. MS thesis. University of British Columbia, Vancouver, B.C. Canada; c2001. 152 p.
  20. Shimazaki K. De-bonded diagonally reinforced beam for good repairability. Conference 13th Annual Institute. Earthquake Engineering of Vancouver(BC), Canada; c2004.
  21. Fortney PJ, Rassati GA, Sharooz BM. Investigation on effect of transverse reinforcement on performance of diagonally reinforced coupling beams. ACI Structural Journal. 2008;105(6):781-788.
  22. Sonobe Y, Kanakubo T, Fujisawa M, Fukuyama H, Tanigaki M, Okamoto T. Structural Performance of Concrete Beams Reinforced with Diagonal FRP Bars. Conference of FRPRCS-2, Non-Metallic (FRP) Reinforcement Concrete Structure. Ghent, Belgium; c1995.
  23. Naish D, Fry A, Klemencic R, Wallace J. Reinforced concrete coupling beams Part 1:Testing. ACI Structural Journal. 2013;100(6):1057-1066.

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