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Application and Innovation of High-Strength Concrete in High-Rise Building Structures
In the process of popularization and application of high-strength materials, it is often difficult to design their strength and ductility. Starting from the seismic design of complex high-rise building structures, this paper proposes a performance-based design method based on the predetermined yield mode, which can comprehensively consider the strength and ductility of structural members. On the basis of this seismic design method, a high-strength concrete high-rise energy dissipation structural system and a high-performance assembled high-rise building structural system are proposed that can give full play to the strength of high-strength materials and the ductility of energy dissipation members. The research results can provide technical support for the application of high-strength concrete in high-rise building structures.
Application and Innovation of High-Strength Concrete in High-Rise Building Structures
In the process of popularization and application of high-strength materials, it is often difficult to design their strength and ductility. Starting from the seismic design of complex high-rise building structures, this paper proposes a performance-based design method based on the predetermined yield mode, which can comprehensively consider the strength and ductility of structural members. On the basis of this seismic design method, a high-strength concrete high-rise energy dissipation structural system and a high-performance assembled high-rise building structural system are proposed that can give full play to the strength of high-strength materials and the ductility of energy dissipation members. The research results can provide technical support for the application of high-strength concrete in high-rise building structures.
Application and Innovation of High-Strength Concrete in High-Rise Building Structures
Xiao, Cong-zhenProf., Dr Civil Engng (Autor:in) / Li, Jian-huiProf., Dr Civil Engng (Autor:in) / Li, Yin-binEngr (Autor:in) / Wei, YueEngr (Autor:in) / Sun, ChaoAssoc. Prof. (Autor:in)
Structural Engineering International ; 32 ; 236-242
03.04.2022
7 pages
Aufsatz (Zeitschrift)
Elektronische Ressource
Englisch
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