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Huanghuang Huang
Huanghuang Huang
CIES, Missouri University of Science and Technology
Verified email at hit.edu.cn
Title
Cited by
Cited by
Year
Influence of rice husk ash on strength and permeability of ultra-high performance concrete
H Huang, X Gao, H Wang, H Ye
Construction and Building Materials 149, 621-628, 2017
2102017
Improvement effect of steel fiber orientation control on mechanical performance of UHPC
H Huang, X Gao, L Li, H Wang
Construction and Building Materials 188, 709-721, 2018
1692018
Influence of rheological properties of cement mortar on steel fiber distribution in UHPC
R Wang, X Gao, H Huang, G Han
Construction and Building Materials 144, 65-73, 2017
1232017
Influence of sisal fibers on the mechanical performance of ultra-high performance concretes
G Ren, B Yao, H Huang, X Gao
Construction and Building Materials 286, 122958, 2021
972021
Fiber alignment and its effect on mechanical properties of UHPC: An overview
H Huang, X Gao, L Teng
Construction and Building Materials 296, 123741, 2021
962021
Research on the self-sensing and mechanical properties of aligned stainless steel fiber-reinforced reactive powder concrete
H Wang, F Shi, J Shen, A Zhang, L Zhang, H Huang, J Liu, K Jin, L Feng, ...
Cement and Concrete Composites 119, 104001, 2021
682021
Contribution of fiber orientation to enhancing dynamic properties of UHPC under impact loading
H Huang, X Gao, KH Khayat
Cement and Concrete Composites 121, 104108, 2021
602021
Effect of carbon nanotube and graphite nanoplatelet on composition, structure, and nano-mechanical properties of CSH in UHPC
H Huang, L Teng, X Gao, KH Khayat, F Wang, Z Liu
Cement and Concrete Research 154, 106713, 2022
592022
Contribution of fiber alignment on flexural properties of UHPC and prediction using the Composite Theory
H Huang, X Gao, KH Khayat
Cement and Concrete Composites 118, 103971, 2021
562021
Improvement effect of fiber alignment on resistance to elevated temperature of ultra-high performance concrete
H Huang, R Wang, X Gao
Composites Part B: Engineering 177, 107454, 2019
562019
Influence of formwork wall effect on fiber orientation of UHPC with two casting methods
H Huang, A Su, X Gao, Y Yang
Construction and Building Materials 215, 310-320, 2019
552019
Prediction of fiber orientation and flexural performance of UHPC based on suspending mortar rheology and casting method
L Teng, H Huang, J Du, KH Khayat
Cement and Concrete Composites 122, 104142, 2021
532021
Influence of fiber alignment and length on flexural properties of UHPC
H Huang, X Gao, KH Khayat, A Su
Construction and Building Materials 290, 122863, 2021
422021
Experimental study on multi-component corrosion inhibitor for steel bar in chloride environment
L Cui, M Hang, H Huang, X Gao
Construction and Building Materials 313, 125533, 2021
362021
Numerical simulation and visualization of motion and orientation of steel fibers in UHPC under controlling flow condition
H Huang, X Gao, A Zhang
Construction and Building Materials 199, 624-636, 2019
312019
Effects of rheological performance, antifoaming admixture, and mixing procedure on air bubbles and strength of UHPC
H Huang, X Gao, D Jia
Journal of Materials in Civil Engineering 31 (4), 04019016, 2019
222019
Use of saturated lightweight sand to improve the mechanical and microstructural properties of UHPC with fiber alignment
H Huang, L Teng, X Gao, KH Khayat, F Wang, Z Liu
Cement and Concrete Composites 129, 104513, 2022
192022
Simplified analytical model to assess key factors influenced by fiber alignment and their effect on tensile performance of UHPC
L Teng, H Huang, KH Khayat, X Gao
Cement and Concrete Composites 127, 104395, 2022
192022
For the improvement of mechanical and microstructural properties of UHPC with fiber alignment using carbon nanotube and graphite nanoplatelet
H Huang, L Teng, KH Khayat, X Gao, F Wang, Z Liu
Cement and Concrete Composites 129, 104462, 2022
172022
SPH simulation and experimental investigation of fiber orientation in UHPC beams with different placements
H Huang, X Gao, Y Li, A Su
Construction and Building Materials 233, 117372, 2020
162020
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