Bulletin of the Chinese Ceramic Society, Volume. 44, Issue 3, 785(2025)

Preparation and Performance Improvement of Ultra-High Strength Strain Hardening Cement-Based Composite

ZHAO Jian1, YANG Dingyi1,2、*, LU Shimin1, YANG Kailu1, MAO Xiang1, CHEN Longxiang1, and WANG Tongzhang1
Author Affiliations
  • 1College of Architectural Science and Engineering, Yangzhou University, Yangzhou 225127, China
  • 2Research Institute of Green Building Materials, Yangzhou University, Yangzhou 225127, China
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    References(21)

    [1] [1] MENG Q F, WU C Q, LI J, et al. Steel/basalt rebar reinforced ultra-high performance concrete components against methane-air explosion loads[J]. Composites Part B: Engineering, 2020, 198: 108215.

    [2] [2] LI V C, LEUNG C K Y. Steady-state and multiple cracking of short random fiber composites[J]. Journal of Engineering Mechanics, 1992, 118(11): 2246-2264.

    [3] [3] LIU H Z, ZHANG Q, LI V, et al. Durability study on engineered cementitious composites (ECC) under sulfate and chloride environment[J]. Construction and Building Materials, 2017, 133: 171-181.

    [4] [4] LI V C. On engineered cementitious composites (ECC)[J]. Journal of Advanced Concrete Technology, 2003, 1(3): 215-230.

    [5] [5] DAI J G, HUANG B T, SHAH S P. Recent advances in strain-hardening UHPC with synthetic fibers[J]. Journal of Composites Science, 2021, 5(10): 283.

    [6] [6] RAVI R, LI V C, Michael S, et al. Composite properties of high-strength, high-ductility concrete[J]. ACI Materials Journal, 2013, 110(4): 413-422.

    [8] [8] AHMED S F U, MAALEJ M. Tensile strain hardening behaviour of hybrid steel-polyethylene fibre reinforced cementitious composites[J]. Construction and Building Materials, 2009, 23(1): 96-106.

    [9] [9] YU K Q, ZHU W J, DING Y, et al. Micro-structural and mechanical properties of ultra-high performance engineered cementitious composites (UHP-ECC) incorporation of recycled fine powder (RFP)[J]. Cement and Concrete Research, 2019, 124: 105813.

    [10] [10] HUANG B T, WENG K F, ZHU J X, et al. Engineered/strain-hardening cementitious composites (ECC/SHCC) with an ultra-high compressive strength over 210 MPa[J]. Composites Communications, 2021, 26: 100775.

    [13] [13] FENG H, NIE S, GUO A F, et al. Evaluation on the performance of magnesium phosphate cement-based engineered cementitious composites (MPC-ECC) with blended fly ash/silica fume[J]. Construction and Building Materials, 2022, 341: 127861.

    [14] [14] ZHANG H W, WU Z M, HU X, et al. Design, production, and properties of high-strength high-ductility cementitious composite (HSHDCC): a review[J]. Composites Part B: Engineering, 2022, 247: 110258.

    [15] [15] XIAO L L, LI F, NIU C, et al. Evaluation of water inrush hazard in coal seam roof based on the AHP-CRITIC composite weighted method[J]. Energies, 2022, 16(1): 114.

    [17] [17] WU Z M, SHI C J, HE W, et al. Effects of steel fiber content and shape on mechanical properties of ultra high performance concrete[J]. Construction and Building Materials, 2016, 103: 8-14.

    [18] [18] PAKRAVAN H R, JAMSHIDI M. Tensile properties of strain-hardening cementitious composites containing polyvinyl-alcohol fibers hybridized with polypropylene fibers[J]. Journal of Central South University, 2018, 25(1): 51-59.

    [19] [19] KANDA T, LIN Z, LI V C. Tensile stress-strain modeling of pseudostrain hardening cementitious composites[J]. Journal of Materials in Civil Engineering, 2000, 12(2): 147-156.

    [20] [20] KANDA T, LI V C. New micromechanics design theory for pseudostrain hardening cementitious composite[J]. Journal of Engineering Mechanics, 1999, 125(4): 373-381.

    [21] [21] LI V C. Engineered cementitious composites (ECC): bendable concrete for sustainable and resilient infrastructure[M]. Berlin, Germany: Springer, 2019.

    [22] [22] LIU T A, YANG Y Z, CHEN Z T, et al. Optimization of fiber volume fraction to enhance reinforcing efficiency in hybrid fiber reinforced strain hardening cementitious composite[J]. Cement and Concrete Composites, 2020, 113: 103704.

    [23] [23] ZHOU Y W, XI B, YU K Q, et al. Mechanical properties of hybrid ultra-high performance engineered cementitous composites incorporating steel and polyethylene fibers[J]. Materials, 2018, 11(8): 1448.

    [24] [24] REDON C, LI V C, WU C, et al. Measuring and modifying interface properties of PVA fibers in ECC matrix[J]. Journal of Materials in Civil Engineering, 2001, 13(6): 399-406.

    [25] [25] RAVI R, Li V C, Michael S,et al. Micromechanics of high-strength, high-ductility concrete[J]. ACI Materials Journal, 2013, 110(4): 375-384.

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    ZHAO Jian, YANG Dingyi, LU Shimin, YANG Kailu, MAO Xiang, CHEN Longxiang, WANG Tongzhang. Preparation and Performance Improvement of Ultra-High Strength Strain Hardening Cement-Based Composite[J]. Bulletin of the Chinese Ceramic Society, 2025, 44(3): 785

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    Paper Information

    Received: Sep. 23, 2024

    Accepted: Apr. 24, 2025

    Published Online: Apr. 24, 2025

    The Author Email: YANG Dingyi (ydy1991@163.com)

    DOI:10.16552/j.cnki.issn1001-1625.2024.1130

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