Punching shear behavior of recycled aggregate concrete slabs with and without steel fibres

Jianzhuang XIAO , Wan WANG , Zhengjiu ZHOU , Mathews M. TAWANA

Front. Struct. Civ. Eng. ›› 2019, Vol. 13 ›› Issue (3) : 725 -740.

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Front. Struct. Civ. Eng. ›› 2019, Vol. 13 ›› Issue (3) : 725 -740. DOI: 10.1007/s11709-018-0510-6
RESEARCH ARTICLE
RESEARCH ARTICLE

Punching shear behavior of recycled aggregate concrete slabs with and without steel fibres

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Abstract

A study on the punching shear behavior of 8 slabs with recycled aggregate concrete (RAC) was carried out. The two main factors considered were the recycled coarse aggregate (RCA) replacement percentage and the steel fibre volumetric ratio. The failure pattern, load-displacement curves, energy consumption, and the punching shear capacity of the slabs were intensively investigated. It was concluded that the punching shear capacity, ductility and energy consumption decreased with the increase of RCA replacement percentage. Research findings indicated that the incorporation of steel fibres could not only improve the energy dissipation capacity and the punching shear capacity of the slab, but also effectively improve the integrity of the slab tension surface and thereby changing the trend from typical punching failure pattern to bending-punching failure pattern. On the basis of the test, the punching shear capacity formula of RAC slabs with and without steel fibres was proposed and discussed.

Keywords

recycled aggregate concrete / steel fibres / slab / punching shear / recycled coarse aggregates replacement percentage

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Jianzhuang XIAO, Wan WANG, Zhengjiu ZHOU, Mathews M. TAWANA. Punching shear behavior of recycled aggregate concrete slabs with and without steel fibres. Front. Struct. Civ. Eng., 2019, 13(3): 725-740 DOI:10.1007/s11709-018-0510-6

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References

[1]

Marzouk H, Hussein A. Experimental investigation on the behavior of high-strength concrete slabs. ACI Materials Journal, 1991, 88(6): 701–713

[2]

Guandalini S, Burdet O L, Muttoni A. Punching tests of slabs with low reinforcement ratios. ACI Materials Journal, 2009, 106(1): 87–95

[3]

Talbot A N. Reinforced Concrete Wall Footings and Column Footings. Engineering Experiment Station. 1913

[4]

Elshafey A A, Rizk E, Marzouk H, Haddara M R. Prediction of punching shear strength of two-way slabs. Engineering Structures, 2011, 33(5): 1742–1753

[5]

Choi K, Taha M, Sherif A. Simplified punching shear design method for slab-column connections using fuzzy learning. ACI Materials Journal, 2007, 104(4): 438–447

[6]

Theodorakopoulos D D, Swamy R N. Ultimate punching shear strength analysis of slab-column connections. Cement and Concrete Composites, 2002, 24(6): 509–521

[7]

American Concrete Institute (ACI). Building Code requirements for structural concrete. ACI 318-11. 2011

[8]

Canadian Standards Association (CSA). Design of concrete structures for buildings. CSA-A23.3-04. 2004

[9]

Eurocode 2: Design of Concrete Structures-Part 1–1. General rules and rules for buildings. BS EN 1992-1-1, 2004: 97–105

[10]

CEB-FIP. Model Code. Bulletin D’ Information No. 203–205. 2004

[11]

Richard C E, Hognestad E. Shearing strength of reinforced concrete slabs. ACI Materials Journal, 1956, 53(7): 29–58

[12]

Moe J. Shearing Strength of Reinforced Concrete Slabs and Footings under Concentrated Loads. Development Department Bulletin D47. 1961

[13]

Youm K S, Kim J J, Moon J. Punching shear failure of slab with lightweight aggregate concrete (LWAC) and low reinforcement ratio. Construction & Building Materials, 2014, 65: 92–102

[14]

Zheng Z Q, Ouyang C S. Punching strength of reinforced concrete circular slabs. Journal of Building Structures, 1985, 6(6): 12–22 (in Chinese)

[15]

Zheng Z Q. The punching strength of reinforced concrete slabs with consideration of bending impaction. Proceedings of the Second Symposium on the Basic Theory and Application of Concrete Structures, 1990: 501–508

[16]

Zheng Y W. Experimental study on punching shear of reinforced concrete slabs. Thesis for the Master’s Degree. Changsha: Hunan University, 2009 (in Chinese)

[17]

Swamy R N, Ali S. Punching shear behavior of reinforced slab-column connections made with steel fibres concrete. Journal of the American Concrete Institute, 1982, 79(5): 392–406

[18]

An Y J, Zhao G F, Huang C K. The experimental research of the steel fibres reinforced concrete slab punching shear resistance (I). Journal of Building Structures, 1994, 15(2): 11–16 (in Chinese)

[19]

An Y J, Zhao G F, Huang C K. The experimental research of the steel fibres reinforced concrete slab punching shear resistance (II). Journal of Building Structures, 1994, 15(3): 63–65 (in Chinese)

[20]

Moraes Neto B N, Barros J A O, Melo G S S A. A model for the prediction of the punching resistance of steel fibre reinforced concrete slabs centrically loaded. Construction & Building Materials, 2013, 46: 211–223

[21]

Belletti B, Walraven J C, Trapani F. Evaluation of compressive membrane action effects on punching shear resistance of reinforced concrete slabs. Engineering Structures, 2015, 95: 25–39

[22]

Shu J, Belletti B, Muttoni A, Scolari M, Plos M. Internal force distribution in RC slabs subjected to punching shear. Engineering Structures, 2017, 153: 766–781

[23]

Belletti B, Pimentel M, Scolari M, Walraven J C. Safety assessment of punching shear failure according to the level of approximation approach. Structural Concrete, 2015, 16(3): 366–380

[24]

Xiao J Z, Li J B, Zhang C H. On relationships between the mechanical properties of recycled aggregate concrete: an overview. Materials and Structures, 2007, 39(6): 655–664

[25]

Choi W C, Yun H D, Kim S W. Flexural performance of reinforced recycled aggregate concrete beams. Magazine of Concrete Research, 2012, 64(9): 837–848

[26]

Xiao J Z, Huang X, Shen L M. Seismic behavior of semi-precast column with recycled aggregate concrete. Construction & Building Materials, 2012, 35: 988–1001

[27]

Cantone R, Belletti B, Manelli L, Muttoni A. Compressive membrane action effects on punching strength of flat RC slabs. Key Engineering Materials, 2016, 711: 698–705

[28]

Lin X J, Zheng Z Q, Qian Z Z. Experimental study on steel fibres reinforced concrete punching plate. Journal of Building Structures, 2012, 24(5): 73, 76–77 (in Chinese)

[29]

Zhou K R. The process, working mechanics and carry capacity research of punching behaviour of concrete slabs. Dissertation for the Doctoral Degree. Shanghai: Tongji University, 1990 (in Chinese)

[30]

Xiao J Z, Li W G, Fan Y H, Huang X. An overview of study on recycled aggregate concrete in China (1996–2011). Construction & Building Materials, 2012, 31: 364–383

[31]

Yang K. The reliability analysis of reinforced concrete slabs in punching shear. Dissertation for the Doctoral Degree. Changsha: Hunan University, 2012, 14 (in Chinese)

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