• Bulletin of the Chinese Ceramic Society
  • Vol. 41, Issue 5, 1638 (2022)
MOU Xinyu*, YU Zihao, BAO Jiuwen, and ZHANG Peng
Author Affiliations
  • [in Chinese]
  • show less
    DOI: Cite this Article
    MOU Xinyu, YU Zihao, BAO Jiuwen, ZHANG Peng. Workability and Mechanical Properties of Self-Compacting Recycled Concrete: a Review[J]. Bulletin of the Chinese Ceramic Society, 2022, 41(5): 1638 Copy Citation Text show less
    References

    [2] BEHERA M, BHATTACHARYYA S K, MINOCHA A K, et al. Recycled aggregate from C&D waste & its use in concrete-a breakthrough towards sustainability in construction sector: a review[J]. Construction and Building Materials, 2014, 68: 501-516.

    [3] SANTOS S, DA SILVA P R, DE BRITO J. Self-compacting concrete with recycled aggregates: a literature review[J]. Journal of Building Engineering, 2019, 22: 349-371.

    [4] GARCIA-TRONCOSO N, LI L F, CHENG Q, et al. Comparative study on the properties and high temperature resistance of self-compacting concrete with various types of recycled aggregates[J]. Case Studies in Construction Materials, 2021, 15: e00678.

    [5] LIU Y X, LING T C, MO K H. Progress in developing self-consolidating concrete (SCC) constituting recycled concrete aggregates: a review[J]. International Journal of Minerals, Metallurgy and Materials, 2021, 28(4): 522-537.

    [7] OKAMURA H, OUCHI M. Self-compacting concrete[J]. Journal of Advanced Concrete Technology, 2003, 1(1): 5-15.

    [8] BAHRAMI N, ZOHRABI M, MAHMOUDY S A, et al. Optimum recycled concrete aggregate and micro-silica content in self-compacting concrete: rheological, mechanical and microstructural properties[J]. Journal of Building Engineering, 2020, 31: 101361.

    [9] SAFIUDDIN M, SALAM M A, JUMAAT M Z. Effects of recycled concrete aggregate on the fresh properties of self-consolidating concrete[J]. Archives of Civil and Mechanical Engineering, 2011, 11(4): 1023-1041.

    [10] ABED M, DE BRITO J. Evaluation of high-performance self-compacting concrete using alternative materials and exposed to elevated temperatures by non-destructive testing[J]. Journal of Building Engineering, 2020, 32: 101720.

    [11] FALESCHINI F, JIMNEZ C, BARRA M, et al. Rheology of fresh concretes with recycled aggregates[J]. Construction and Building Materials, 2014, 73: 407-416.

    [12] ABED M, NEMES R, LUBLY . Performance of self-compacting high-performance concrete produced with waste materials after exposure to elevated temperature[J]. Journal of Materials in Civil Engineering, 2020, 32(1): 05019004.

    [15] CHIDIAC S E, MAHMOODZADEH F. Plastic viscosity of fresh concrete: a critical review of predictions methods[J]. Cement and Concrete Composites, 2009, 31(8): 535-544.

    [16] YAHIA A, MANTELLATO S, FLATT R J. Concrete rheology: a basis for understanding chemical admixtures[J]. Science and Technology of Concrete Admixtures, 2016: 97-127.

    [18] CHIDIAC S E, HABIBBEIGI F. Modelling the rheological behaviour of fresh concrete: an elasto-viscoplastic finite element approach[J]. Computers and Concrete, 2005, 2(2): 97-110.

    [22] CHEN Y Y, TUAN B L A, HWANG C L. Effect of paste amount on the properties of self-consolidating concrete containing fly ash and slag[J]. Construction and Building Materials, 2013, 47: 340-346.

    [23] LI L G, KWAN A K H. Concrete mix design based on water film thickness and paste film thickness[J]. Cement and Concrete Composites, 2013, 39: 33-42.

    [24] OKAMURA H, OZAWA K. Mix-design for self-compacting concrete[J]. Concrete Library of JSCE, 1993, 25: 107-120.

    [25] SU N, HSU K C, CHAI H W. A simple mix design method for self-compacting concrete[J]. Cement and Concrete Research, 2001, 31(12): 1799-1807.

    [27] SANTOS S A, DA SILVA P R, DE BRITO J. Durability evaluation of self-compacting concrete with recycled aggregates from the precast industry[J]. Magazine of Concrete Research, 2019, 71(24): 1265-1282.

    [28] GONZLEZ-TABOADA I, GONZLEZ-FONTEBOA B, MARTNEZ-ABELLA F, et al. Analysis of rheological behaviour of self-compacting concrete made with recycled aggregates[J]. Construction and Building Materials, 2017, 157: 18-25.

    [29] GUPTA P K, RAJHANS P, PANDA S K, et al. Mix design method for self-compacting recycled aggregate concrete and its microstructural investigation by considering adhered mortar in aggregate[J]. Journal of Materials in Civil Engineering, 2020, 32(3): 04019371.

    [31] SASANIPOUR H, ASLANI F, TAHERINEZHAD J. Effect of silica fume on durability of self-compacting concrete made with waste recycled concrete aggregates[J]. Construction and Building Materials, 2019, 227: 116598.

    [32] MOHSENI E, SAADATI R, KORDBACHEH N, et al. Engineering and microstructural assessment of fibre-reinforced self-compacting concrete containing recycled coarse aggregate[J]. Journal of Cleaner Production, 2017, 168: 605-613.

    [33] BEHERA M, MINOCHA A K, BHATTACHARYYA S K. Flow behavior, microstructure, strength and shrinkage properties of self-compacting concrete incorporating recycled fine aggregate[J]. Construction and Building Materials, 2019, 228: 116819.

    [34] KOU S C, POON C S. Properties of self-compacting concrete prepared with coarse and fine recycled concrete aggregates[J]. Cement and Concrete Composites, 2009, 31(9): 622-627.

    [35] CHAKKAMALAYATH J, JOSEPH A, AL-BAGHLI H, et al. Performance evaluation of self-compacting concrete containing volcanic ash and recycled coarse aggregates[J]. Asian Journal of Civil Engineering, 2020, 21(5): 815-827.

    [38] GNEYISI E, GESOLU M, ALGIN Z, et al. Effect of surface treatment methods on the properties of self-compacting concrete with recycled aggregates[J]. Construction and Building Materials, 2014, 64: 172-183.

    [40] PANESAR D K, SHINDMAN B. The effect of segregation on transport and durability properties of self consolidating concrete[J]. Cement and Concrete Research, 2012, 42(2): 252-264.

    [42] GRDIC Z J, TOPLICIC-CURCIC G A, DESPOTOVIC I M, et al. Properties of self-compacting concrete prepared with coarse recycled concrete aggregate[J]. Construction and Building Materials, 2010, 24(7): 1129-1133.

    [43] CORINALDESI V, MORICONI G. The role of industrial by-products in self-compacting concrete[J]. Construction and Building Materials, 2011, 25(8): 3181-3186.

    [44] TANG W C, RYAN P C, CUI H Z, et al. Properties of self-compacting concrete with recycled coarse aggregate[J]. Advances in Materials Science and Engineering, 2016, 2016: 2761294.

    [45] PEREIRA-DE-OLIVEIRA L A, NEPOMUCENO M C S, CASTRO-GOMES J P, et al. Permeability properties of self-compacting concrete with coarse recycled aggregates[J]. Construction and Building Materials, 2014, 51: 113-120.

    [46] ABED M, NEMES R, TAYEH B A. Properties of self-compacting high-strength concrete containing multiple use of recycled aggregate[J]. Journal of King Saud University - Engineering Sciences, 2020, 32(2): 108-114.

    [48] TUYAN M, MARDANI-AGHABAGLOU A, RAMYAR K. Freeze-thaw resistance, mechanical and transport properties of self-consolidating concrete incorporating coarse recycled concrete aggregate[J]. Materials & Design, 2014, 53: 983-991.

    [49] RAJHANS P, PANDA S K, NAYAK S. Sustainable self compacting concrete from C&D waste by improving the microstructures of concrete ITZ[J]. Construction and Building Materials, 2018, 163: 557-570.

    [50] MOHSENI E, TANG W, CUI H Z. Chloride diffusion and acid resistance of concrete containing zeolite and tuff as partial replacements of cement and sand[J]. Materials (Basel, Switzerland), 2017, 10(4): 372.

    [51] BEIGI M H, BERENJIAN J, LOTFI OMRAN O, et al. An experimental survey on combined effects of fibers and nanosilica on the mechanical, rheological, and durability properties of self-compacting concrete[J]. Materials & Design, 2013, 50: 1019-1029.

    [54] SINGH D, SENTHIL K, EMMANUEL P C. Mechanical and durability properties of recycled aggregate self-compacting concrete along with basalt fibers[C]//Recycled Waste Materials, 2019: 199-211.

    [55] ORTIZ J A, DE LA FUENTE A, SEBASTIA F M, et al. Steel-fibre-reinforced self-compacting concrete with 100% recycled mixed aggregates suitable for structural applications[J]. Construction and Building Materials, 2017, 156: 230-241.

    MOU Xinyu, YU Zihao, BAO Jiuwen, ZHANG Peng. Workability and Mechanical Properties of Self-Compacting Recycled Concrete: a Review[J]. Bulletin of the Chinese Ceramic Society, 2022, 41(5): 1638
    Download Citation