Journal of the Chinese Ceramic Society, Volume. 50, Issue 11, 2844(2022)
Rheological Properties and Stability of Ultra-High Performance Concrete Containing Coarse Aggregate
[2] [2] WANG Y, SHAO X D, CAO J H. Experimental study on basic performances of reinforced UHPC bridge deck with coarse aggregates[J]. J Bridge Eng, 2019, 24(12): 04019119.
[3] [3] LV Y, ZHANG W, WU F, et al. Static mechanical properties and mechanism of C200 ultra-high performance concrete (UHPC) containing coarse aggregates[J]. Sci Eng Compos Mater, 2020, 27(1): 186-195.
[5] [5] MA J, ORGASS M, DEHN F, et al. Comparative investigations on ultrahigh performance concrete with and without coarse aggregates[C]//In: International symposium on ultra high performance concrete. Germany: Kassel, 2004: 205-212.
[6] [6] WANG J Q, LIU J Q, WANG Z, et al. Cost-effective uhpc for accelerated bridge construction: Material properties, structural elements, and structural applications[J]. J Bridge Eng, 2020, 26(2): 04020117.
[7] [7] LI P P, CAO Y Y, SLUIJSMANS M J C, et al. Synergistic effect of steel fibres and coarse aggregates on impact properties of ultra-high performance fibre reinforced concrete[J]. Cem Concr Compos, 2021, 115: 103866.
[8] [8] ESMAEILKHANIAN B, DIEDERICH P, KHAYAT K H, et al. Influence of particle lattice effect on stability of suspensions: Application to self-consolidating concrete[J]. Mater Struct, 2017, 50(1): 1-15.
[9] [9] SHI C J, WU Z M, XIAO J F, et al. A review on ultrahigh performance concrete: Part I. raw materials and mixture design[J]. Constr Build Mater, 2015, 101: 741-751.
[10] [10] DILS J, BOEL V, SCHUTTER G D. Influence of cement type and mixing pressure on air content, rheology and mechanical properties of UHPC[J]. Constr Build Mater, 2013, 41: 455-463.
[11] [11] LIU J Z, WANG K J, ZHANG Q Q, et al. Influence of superplasticizer dosage on the viscosity of cement paste with low water-binder ratio[J]. Constr Build Mater, 2017, 149: 359-366.
[12] [12] KAMAL H K, MENG W N, KAVYA V, et al. Rheological properties of ultra-high-performance concrete-an overview[J]. Cem Concr Res, 2019, 124: 105828.
[13] [13] KUDER K G, OZYURT N, MU E B, et al. Rheology of fiber-reinforced cementitious materials[J]. Cem Concr Res, 2007, 37(2): 191-199.
[14] [14] ZHOU M, WU Z M, OUYANG X, et al. Mixture design methods for ultra-high-performance concrete-A review[J]. Cem Concr Compos, 2021, 124: 104242.
[15] [15] NANTHAGOPALAN P, HAIST M, SANTHANAM M, et al. Investigation on the influence of granular packing on the flow properties of cementitious suspensions[J]. Cem Concr Compos, 2008, 30: 763-768.
[16] [16] LASKAR A I, TALUKDAR S. Rheological behavior of high performance concrete with mineral admixtures and their blending[J]. Constr Build Mater, 2008, 22: 2345-2354.
[17] [17] TENG L, MENG W N, KHAYAT K H. Rheology control of ultra-high-performance concrete made with different fiber contents[J]. Cem Concr Res, 2020, 138: 106222.
[19] [19] LIU J P, LI C F, LIU J Z, et al. Characterization of fiber distribution in steel fiber reinforced cementitious composites with low water-binder ratio[J]. Indian J Eng Mater Sci, 2011, 18(6): 449-457.
[20] [20] FEYS D, WALLEVIK J E, YAHIA A, et al. Extension of the Reiner-Riwlin equation to determine modified Bingham parameters measured in coaxial cylinders rheometers[J]. Mater Struct, 2013, 46(1/2): 289-311.
[21] [21] HEIRMAN G, VANDEWALLE L, VAN G D, et al. Integration approach of the Couette inverse problem of powder type self-compacting concrete in a wide-gap concentric cylinder rheometer[J]. J Non-Newton Fluid, 2008, 150(2/3): 93-103.
[22] [22] ROUSSEL N, STEFANI C, LEROY R. From mini-cone test to Abrams cone test: measurement of cement based materials yield stress using slump tests[J]. Cem Concr Res, 2005, 35(5): 817-822.
[24] [24] OLAFUR H W, FEYS D, JON E, et al. Avoiding inaccurate interpretations of rheological measurements for cement-based materials[J]. Cem Concr Res, 2015, 78: 100-109.
[25] [25] WU Z M, KHAYAT K H, SHI C J. Changes in rheology and mechanical properties of ultra-high performance concrete with silica fume content[J]. Cem Concr Res, 2019, 123: 105786.
[27] [27] JIAO D W, SHI C J, YUAN Q, et al. Effect of constituents on rheological properties of fresh concrete-A review[J]. Cem Concr Compos, 2017, 83: 146-159.
[28] [28] FEYS D, VERHOEVEN R, SCHUTTER G D. Why is fresh self-compacting concrete shear thickening?[J]. Cem Concr Res, 2009, 39(6): 510-523.
[29] [29] JIANG S, SHAN B, OUYANG J, et al. Rheological properties of cementitious composites with nano/fiber fillers[J]. Constr Build Mater, 2018, 158: 786-800.
[30] [30] WANG R, GAO X, HUANG H, et al. Influence of rheological properties of cement mortar on steel fiber distribution in UHPC[J]. Constr Build Mater, 2017, 144(30): 65-73.
Get Citation
Copy Citation Text
ZHENG Xiaobo, HAN Fangyu, LIU Jianzhong, LIU Jiaping, SHA Jianfang, LIN Wei. Rheological Properties and Stability of Ultra-High Performance Concrete Containing Coarse Aggregate[J]. Journal of the Chinese Ceramic Society, 2022, 50(11): 2844
Category:
Received: Apr. 6, 2022
Accepted: --
Published Online: Jan. 27, 2023
The Author Email: Xiaobo ZHENG (zhengxiaobo@cnjsjk.cn)