• Bulletin of the Chinese Ceramic Society
  • Vol. 41, Issue 6, 1879 (2022)
DONG Yemin1、2、* and HU Chuanlin1、2
Author Affiliations
  • 1[in Chinese]
  • 2[in Chinese]
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    DOI: Cite this Article
    DONG Yemin, HU Chuanlin. Hydration and Mechanical Properties Development of UHPC with Large Substitution Level of Limestone and Calcined Clay at Early Stage under Different Curing Regimes[J]. Bulletin of the Chinese Ceramic Society, 2022, 41(6): 1879 Copy Citation Text show less
    References

    [2] AHMAD S. Use of alternative waste materials in producing ultra-high performance concrete[J]. MATEC Web of Conferences, 2017, 120: 03014.

    [3] CHEN Y, MATALKAH F, SOROUSHIAN P, et al. Optimization of ultra-high performance concrete, quantification of characteristic features[J]. Cogent Engineering, 2019, 6(1): 1558696.

    [4] DU J, MENG W N, KHAYAT K H, et al. New development of ultra-high-performance concrete (UHPC)[J]. Composites Part B: Engineering, 2021, 224: 109220.

    [5] YU R, SPIESZ P, BROUWERS H J H. Mix design and properties assessment of ultra-high performance fibre reinforced concrete (UHPFRC)[J]. Cement and Concrete Research, 2014, 56: 29-39.

    [6] WONG H H C, KWAN A K H. Packing density of cementitious materials: part 1—measurement using a wet packing method[J]. Materials and Structures, 2008, 41(4): 689-701.

    [7] GRAYBEAL B. Material property characterization of ultra-high performance concrete[R]. FHWA-HRT-06-103, 2006.

    [8] RICHARD P, CHEYREZY M. Composition of reactive powder concretes[J]. Cement and Concrete Research, 1995, 25(7): 1501-1511.

    [9] KORPA A, KOWALD T, TRETTIN R. Phase development in normal and ultra high performance cementitious systems by quantitative X-ray analysis and thermoanalytical methods[J]. Cement and Concrete Research, 2009, 39(2): 69-76.

    [10] MUZENDA T R, HOU P K, KAWASHIMA S, et al. The role of limestone and calcined clay on the rheological properties of LC3[J]. Cement and Concrete Composites, 2020, 107: 103516.

    [11] MARTIRENA F, FAVIER A, SCRIVENER K. Calcined clays for sustainable concrete[M]. Dordrecht: Springer Netherlands, 2018.

    [12] PUERTA-FALLA G, BALONIS M, SAOUT G, et al. The influence of metakaolin on limestone reactivity in cementitious materials[C]//Calcined Clays for Sustainable Concrete, 2015.

    [13] ZHANG D, JAWORSKA B, ZHU H, et al. Engineered cementitious composites (ECC) with limestone calcined clay cement (LC3)[J]. Cement and Concrete Composites, 2020, 114: 103766.

    [14] ANTONI M, ROSSEN J, MARTIRENA F, et al. Cement substitution by a combination of metakaolin and limestone[J]. Cement and Concrete Research, 2012, 42(12): 1579-1589.

    [15] SUN Y, YU R, WANG S Y, et al. Development of a novel eco-efficient LC2 conceptual cement based ultra-high performance concrete (UHPC) incorporating limestone powder and calcined clay tailings: design and performances[J]. Journal of Cleaner Production, 2021, 315: 128236.

    [16] MO Z Y, WANG R, GAO X J. Hydration and mechanical properties of UHPC matrix containing limestone and different levels of metakaolin[J]. Construction and Building Materials, 2020, 256: 119454.

    [17] MITCHELL J K, SOGA K. Fundamentals of soil behavior[M]. 3rd ed. Wiley, 2005.

    [18] FERNANDEZ R, MARTIRENA F, SCRIVENER K L. The origin of the pozzolanic activity of calcined clay minerals: a comparison between kaolinite, illite and montmorillonite[J]. Cement and Concrete Research, 2011, 41(1): 113-122.

    [19] MENG W N, KHAYAT K H. Effect of hybrid fibers on fresh properties, mechanical properties, and autogenous shrinkage of cost-effective UHPC[J]. Journal of Materials in Civil Engineering, 2018, 30(4): 04018030.

    [20] SHAH V, PARASHAR A, MISHRA G, et al. Influence of cement replacement by limestone calcined clay pozzolan on the engineering properties of mortar and concrete[J]. Advances in Cement Research, 2020, 32(3): 101-111.

    [21] VANCE K, AGUAYO M, OEY T, et al. Hydration and strength development in ternary Portland cement blends containing limestone and fly ash or metakaolin[J]. Cement and Concrete Composites, 2013, 39: 93-103.

    [22] IPAVEC A, GABROVEK R, VUK T, et al. Carboaluminate phases formation during the hydration of calcite-containing Portland cement[J]. Journal of the American Ceramic Society, 2011, 94(4): 1238-1242.

    [23] HUANG W, KAZEMI-KAMYAB H, SUN W, et al. Effect of replacement of silica fume with calcined clay on the hydration and microstructural development of eco-UHPFRC[J]. Materials & Design, 2017, 121: 36-46.

    [24] AVET F, SCRIVENER K. Investigation of the calcined kaolinite content on the hydration of limestone calcined clay cement (LC3)[J]. Cement and Concrete Research, 2018, 107: 124-135.

    DONG Yemin, HU Chuanlin. Hydration and Mechanical Properties Development of UHPC with Large Substitution Level of Limestone and Calcined Clay at Early Stage under Different Curing Regimes[J]. Bulletin of the Chinese Ceramic Society, 2022, 41(6): 1879
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