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职业迁徙
个人简介
The efforts of his work focus on the investigation into and development of sustainable metal-composite materials and technologies including ultra-lightweight and high strength composite materials and structural systems that can withstand extreme loads. These investigations have ranged from technologies for prefabrication production of composite and hybrid structures for high-rise and large span systems at one extreme to design for fire hazards, impact and blast loadings for structures in offshore and defence related industries at the other end of the spectrum. He provides technical advice to steelwork contractors, consultants and the wider construction industry on a broad range of topics including design and construction of large span structures and tall buildings. Arising from his research work, he has filed several patents including novel connectors for modular buildings, 3-in-1 scaffold coupler, deployable cable-strut system, J-hook shear connector for sandwich construction and water tank energy façade system. His research team has developed an ultra-lightweight floating concrete that have a structural compressive strength of more than 50MPa. This is a breakthrough in research in cementitious composite materials for offshore and marine application. The research team also made another breakthrough in the development of ultra-high strength concrete of 200MPa compressive strength which can be used for high-rise construction.
研究兴趣
论文共 327 篇作者统计合作学者相似作者
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ENGINEERING STRUCTURES (2024): 117049-117049
Engineering Structures (2023): 116437-116437
Journal of Building Engineering (2023): 107886-107886
PROCEEDINGS OF THE 17TH EAST ASIAN-PACIFIC CONFERENCE ON STRUCTURAL ENGINEERING AND CONSTRUCTION, EASEC-17 2022 (2023): 545-564
Structures (2023): 105130
ENGINEERING STRUCTURES (2023): 115949-115949
Journal of Constructional Steel Research (2023): 107836-107836
ENGINEERING STRUCTURES (2023): 116021-116021
THIN-WALLED STRUCTURES (2023): 111127-111127
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