
职 称:副教授(硕士生导师)
学 位:博士
研究领域:火灾安全与结构抗火、抗震与动力多灾害控制、新材料组合结构应用
招生方向:结构工程、土木水利、防灾减灾工程及防护工程
电 话:13609020799
电子邮箱:cvexmx@gzhu.edu.cn
个人简介
熊明祥,广州大学土木与交通工程学院副教授,硕士生导师,国家一级注册结构工程师,全国结构抗火技术研讨会学术委员会委员。主要从事新材料组合结构抗火、抗震与动力多灾害控制方面的研究工作,主持广东省自然科学基金等省市级项目4项;出版高性能组合结构专著1本(Elsevier),主编新加坡组合结构设计规范1部、参编中钢协高强钢结构设计标准1部;以一作/通讯发表SCI论文近50篇,包括Web of Science 高被引论文2篇、英国结构工程师学会最佳论文奖1篇;Google Scholar引用3300余次,H-index指数30,单篇最高他引400余次;连续多年入选斯坦福全球Top2%顶尖科学家榜单。
研究方向主要面向钢结构与组合结构在高层、大跨建筑及基础设施中的工程应用,重点开展结构承载能力提升与多灾害韧性增强技术研究,探索基于性能的防灾减灾设计理念。先后主持与参与多项大跨与高层建筑的结构性能化设计与工程咨询工作,包括广州西塔、上海工业博物馆、浦东机场航站楼、上海北外滩91街坊超高层塔冠、天津117塔冠、新加坡星耀樟宜国际机场(Jewel)、OUB Center等标志性大跨/高层钢结构与组合结构的结构设计与防火保护深化工作,以及马来西亚国油(Petronas)和新加坡巴斯夫(BASF)等能源基础设施结构的爆炸防护设计等项目。
教育背景
2008-08 至 2013-06,新加坡国立大学,结构工程,博士
2003-09 至 2005-12,华中科技大学/哈尔滨工业大学(联合培养),结构工程,硕士
1999-09 至 2003-07,武汉科技大学,土木工程,学士
工作经历
2019-05 至今,英国上市365官网,土木与交通工程学院/抗震中心,副教授
2018-09 至 2019-05,新加坡国立大学,土木与环境工程系,研究员
2016-06 至 2018-09,广东工业大学,土木与交通工程学院,讲师
2013-07 至 2016-05,新加坡国立大学,土木与环境工程系,博士后
2006-01 至 2008-07,广州容柏生建筑结构设计事务所,结构工程师
教育教学
指导硕士研究生24名(已毕业15名)、福霖班本科生6名(已毕业5名)。教授本科生课程包括钢结构设计原理、组合结构设计原理、中美欧钢结构设计概论、结构抗震与高层建筑结构设计、土木工程发展前沿、工程项目管理、工程建设法规、毕业设计,研究生课程包括钢与混凝土组合结构设计。
指导学生获奖:
2022年,硕士研究生国家奖学金,皮鹏伟,独立指导
2022年,英国上市365官网本科生优秀毕业设计,刘博元、魏立华,独立指导
2024年,全国大学生结构信息技术大赛,国家级一等奖,袁宝聪/尹红军/张兴国,独立指导
2025年,全国大学生结构信息技术大赛,国家级特等奖/优秀指导老师奖,王霖/袁宝聪/尹红军,独立指导
主要研究成果
广东省自然科学基金项目“新型FRP-高强混凝土-高强型钢组合柱的双重约束与截面压溃力学行为研究”,2023-01至2025-12,主持
广东省自然科学基金项目“超高强钢管混凝土正截面受压高温力学行为与抗火设计方法研究”,2021-01至2023-12,主持
广州市基础研究计划市校(院)联合资助项目“高强钢管约束超高强混凝土柱压弯相关性能研究”,2021-04至2023-03,主持
广东省自然科学基金项目“钢管再生混凝土劲性立柱轴压时变承载力的理论与试验研究”,2018-05至2021-04,主持
亚热带建筑科学国家重点实验室开放课题“钢管高强混凝土构件在火灾作用下的压弯性能及设计方法研究”,2017-01至2018-12,主持
专著(主编):Liew J.Y.R., Xiong M.X., Lai B.L. Design of steel-concrete composite structures using high-strength materials. Elsevier, ISBN: 978-0-12-823396-2, 2021.
规范 (新加坡,主编):Building and Construction Authority of Singapore. BC4: Design Guide for Concrete Filled Tubular Members with High Strength Materials, 2021;Example Calculations to the Requirements of BC4, 2021.
规范 (中国钢结构协会,参编) :《高强度690至960MPa钢结构设计标准》, 2026.
Xiong M.X., Wu R., Wang W., Deng Z. Fire resistance performance of sandwich water protected concrete-filled steel tubular columns: An experimental investigation. Engineering Structures 346 (2026) 121646.
Xiong M.X., Yang Y.D., Li Z.Z. Seismic behavior of concrete shear walls fully reinforced with GFRP bars: Effects of shear span ratio and boundary elements. Soil Dynamics and Earthquake Engineering 206 (2026) 110253.
Xiong M.X.,Chen C., Liu J. Effects of stirrup configuration and reinforcement ratio on the seismic behavior of GFRP-reinforced concrete beam-column joints. Journal of Building Engineering 117 (2026) 114719.
Ming-Xiang Xiong, Zihan Deng, Shenchun Xu. Efficiency assessment of converting single-tube to double-tube CFST columns in fire resistance based on functionally graded concrete. Fire Technology (2026) 62:2.
Xu S., Zhong R., Xiong M.X.*, Chong C., Zhou Y., Yuan P. Experimental and numerical study on prefabricated double vertical rectangular steel tube sandwich panel under low-velocity impact. Structures 76 (2025): 109005.
Xiong M.X., Ren T., Zhou P., Yang M., Gong W., Li H. Post-fire compressive behavior of CFRP stirrups reinforced CFST columns: Experimental investigation and calculation models. Thin-Walled Structures 2024(198): 111747.
Wang Y.B., Song C., Xiong M.X.*, Liew J.Y.R. Mechanical behavior and design applicability of ultra-high-performance concrete-filled circular steel tubular short columns under axial compression. Engineering Structures. 2024; 299: 117112.
Xiong M.X., Xiong G.Y., Hu Q.D., Chen X.C. High-strength steel-wire-mesh reinforced square concrete filled steel tubular columns: Concept and compressive behavior. Structural Design of Tall and Special Buildings 2023; 32(1): e1993.
Ren F.M., Liang Y.W., Chen G.M., Xie P., Xiong M.X.*, Wu D. FRP-confined steel-reinforced RAC short columns under eccentric compression: A parametric study and a new design calculation model. Composite Structures 2022; 291: 115597.
熊明祥, 胡琪东, 刘博元, 林靖. 高强中空夹层钢管混凝土柱的耐火性能试验研究. 工程力学, 2022, 39(11): 177-185.
Ren F.M., Zheng Z.D., Xiong M.X.*, Lin J., Liu B.Y. Lateral force-resisting behavior of GFRP-tube reinforced concrete-filled multicellular steel tubular shear walls under cyclic loads. Journal of Building Engineering 2022; 45: 103541.
Ren F.M., Liu T.Y., Chen G.M., Xie P., Xiong M.X.*, Yuan T., Chen Y.L., Guo S.Z. Flexural behavior and modelling of FRP-bar reinforced seawater sea sand concrete beams exposed to subtropical coastal environment. Construction and Building Materials 2021; 309: 125071.
Xiong M.X., Lan Z.H., Chen G.M., Lu Y.C., Xu Z. Behavior of FRP-HSC-steel tubular columns under axial compression: A comparative study. Composite Structures 2021; 261: 113566.
Ren F.M., Wu D., Chen G.M., Xie P., Xiong M.X.*, Liang Y.W. Slender FRP-confined steel-reinforced RAC columns under eccentric compression: Buckling behavior and design calculation models. Engineering Structures 2021; 246: 113059.
Xiong M.X., Liew J.Y.R. Fire resistance of high-strength steel tubes infilled with ultra-high-strength concrete under compression. Journal of Constructional Steel Research 2021; 176: 106410.
Xiong M.X., Liew J.Y.R. Buckling behavior of circular steel tubes infilled with C170/185 ultra-high strength concrete under fire. Engineering Structures 2020; 212: 110523.
Zhou H.Y., Jian K.C., Wang X.J., Xiong M.X.*, Wang Y.H. Experimental and numerical investigation of low velocity impact response of foam concrete filled auxetic honeycombs. Thin-Walled Structures 2020; 154:106898.
Xiong M.X., Liew J.Y.R. Discussion on the applicability of the M-N interaction curve for the fire resistance design of CFT members. Thin-Walled Structures 2018; 125: 172-186.
Xiong M.X., Xiong D.X., Liew J.Y.R. Axial performance of short concrete filled steel tubes with high- and ultra-high- strength materials. Engineering Structures 2017; 136: 494-510.
Xiong M.X., Xiong D.X., Liew J.Y.R. Behaviour of steel tubular members infilled with ultra high strength concrete. Journal of Constructional Steel Research 2017; 138: 168-183.
Xiong M.X., Liew J.Y.R. Mechanical properties of heat-treated high tensile structural steel at elevated temperatures. Thin-Walled Structures 2016; 98:169-176.
Xiong M.X., Liew J.Y.R. Mechanical behaviour of ultra-high strength concrete at elevated temperatures and fire resistance of ultra-high strength concrete filled steel tubes. Materials & Design 2016; 104:414-427.
Wei M.W., Liew J.Y.R., Xiong M.X.*, Fu X.Y. Hysteresis model of a novel partially connected buckling-restrained steel plate shear wall. Journal of Constructional Steel Research 2016; 125:74-87.
Wang Y.H., Xiong M.X.* Analysis of axially restrained water storage tank under blast loading. International Journal of Impact Engineering 2015; 86: 167-178.