Effect of Confining Layers of Steel Straps Confined High-Strength Concrete Cylinder under Uniaxial Cyclic Compression

Authors

  • Hoong Pin Lee Faculty of Civil Engineering, Universiti Teknologi Malaysia, 81310 UTM Johor Bahru, Johor, Malaysia
  • Abdullah Zawawi Awang Faculty of Civil Engineering, Universiti Teknologi Malaysia, 81310 UTM Johor Bahru, Johor, Malaysia
  • Wahid Omar Faculty of Civil Engineering, Universiti Teknologi Malaysia, 81310 UTM Johor Bahru, Johor, Malaysia

DOI:

https://doi.org/10.11113/jt.v70.2384

Keywords:

Lateral confinement, steel straps, confining layers, uniaxial cyclic loading, stress-strain behaviour

Abstract

The remarkable advantages and promising increment in concrete ultimate capacity as well as ductility by using steel straps as lateral confinement has brought the steel strapping tensioning technique (SSTT) as one of the most affordable confining technique in market. A number of studies have been reported the behaviour of SSTT-confined concrete under uniaxial monotonic compression loading but none of any study addressed the uniaxial cyclic response of such confinement. In this paper, twenty-one high-strength concrete cylinder specimens with diameter of 150 mm and 300 mm in height were cast, laterally pre-tensioned with steel strap in different confining layers and tested to failure under uniaxial cyclic and monotonic compression loading. A number of conclusions to be drawn from experimental results including the tangential validation of stress-strain curve for uniaxial monotonic and cyclic loading, independency of plastic strain to the amount of confining layers, the disagreement of uniqueness concept on the repeated uniaxial unloading and reloading cycles, and the promising effect of confining layers and loading patterns to the ultimate capacity of SSTT confinement. A plastic strain model is proposed and compared with existing plastic strain models. The result proved that SSTT confinement able to secure the lowest plastic strain among the others existing confinement method. 

References

Hoong-Pin L., Awang A. Z., Omar W. 2013. Short Term Durability Studies on High Strength Concrete Columns Confined with Steel Strapping Tensioning Technique (SSTT). In: GEOCON 2013, Johor.

Hoong-Pin L., Awang A. Z., Omar W. 2013. Behaviour of Steel Strapping Tensioning Technique (SSTT) Confined High-Strength Concrete with Different Lateral Pre-tensioning Stresses. In: IGCESH 2013.

Awang A. Z., Omar W., Hoong-Pin L., Ma C. K. 2012. Behaviour of Externally-Confined High Strength Concrete Column Under Uniaxial Compression Load. In: APSEC-ICCER 2012. 1–9.

Awang A. Z., Omar W., Hoong-Pin L. 2012. The Effectiveness of Metal Straps Strengthening In Layers At High Strength Concrete Column. In: APSEC-ICCER 2012, Surabaya, Indonesia.

Moghaddam H., Samadi M., Pilakoutas K. 2010. Compressive Behavior of Concrete Actively Confined by Metal Strips, Part B: Analysis. Mater. Struct. 43: 1383–1396.

Moghaddam H., Samadi M., Mohebbi S. 1995. RC Members Strengthening by Lateral Post-Tensioning of External Metal Strips. In: Int. Earthq. Symp. KOCAEU 2007. 454–462.

Moghaddam H., Pilakoutas K., Samadi M., Mohebbi S. 2008. Behavior and Modeling of Concrete Columns Confined by External Post-Tensioned Strips. In: Struct. Congr. 2008. 1–10.

Moghaddam H., Samadi M., Pilakoutas K., Mohebbi S. 2010. Axial Compressive Behavior of Concrete Actively Confined by Metal Strips; Part A: Experimental Study. Mater. Struct. 43: 1369–1381.

Saadatmanesh H., Ehsani M. R., Li M. W. 2008. Strength and Ductility of Concrete Members Confined by External Post-tensioned Strips. 4th Natl. Conf. Civ. Eng.

Frangou M., Pilakoutas K., Dritsos S. 1995. Structural Repair/Strengthening of RC Columns. Constr. Build. Mater. 9: 259–266.

Sinha B. P., Gerstle K. H., Tulin L. G. 1964. Stress-Strain Relations for Concrete Under Cyclic Loading. ACI J. 61: 195–211.

Lam L., Teng J. G., Cheung C. H, Xiao Y. 2006. FRP-Confined Concrete Under Axial Cyclic Compression. Cem. Concr. Compos. 28: 949–958.

Rodrigues C., Silva M. G. 2001. Experimental Investigation of CFRP Reinforced Concrete Columns under Uniaxial Cyclic Compression. In: Fifth Int. Conf. Fibre-Reinforced Plast. Reinf. Concr. Struct., London, UK. 783–792.

Cheong H. K., Perry S. H. 1993. Cyclic Loading of Laterally Confined Concrete Columns. Mater. Struct. 26: 557–562.

Ilki A., Kumbasar N. 2003. Compressive Behaviour of Carbon Fiber Composite Jacketed Concrete with Circular and Non-Circular Cross Sections. J. Earthq. Eng. 3: 381–406.

Abbasnia R., Hosseinpour F., Rostamian M., Ziaadiny H. 2012. Effect of Corner Radius on Stress-Strain Behavior of FRP Confined Prisms under Axial Cyclic Compression. Eng. Struct. 40: 529–535.

Wang Z., Wang D., Smith S. T., Lu D. 2012. Experimental Testing and Analytical Modeling of CFRP-confined Large Circular RC Columns Subjected to Cyclic Axial Compression. Eng. Struct. 40: 64–74.

Sakai J., Kawashima K. 2006. An Unloading and Reloading Stress-Strain Model for Concrete Confined by Tie Reinforcements, 12WCEE 2000. 1–8.

Downloads

Published

2014-08-27

Issue

Section

Science and Engineering

How to Cite

Effect of Confining Layers of Steel Straps Confined High-Strength Concrete Cylinder under Uniaxial Cyclic Compression. (2014). Jurnal Teknologi (Sciences & Engineering), 70(1). https://doi.org/10.11113/jt.v70.2384