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Huanghuang Huang
Huanghuang Huang
CIES, Missouri University of Science and Technology
在 hit.edu.cn 的电子邮件经过验证
标题
引用次数
引用次数
年份
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
1722018
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
1242017
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
1002021
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
972021
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
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
642022
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
622021
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
572019
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
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
322019
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
232019
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
172020
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