Generation of strut-and-tie models in concrete structures by topology optimization based on moving morphable components
Explicit topology optimization based on moving morphable components (MMCs) is a novel and revolutionary topology optimization framework that may be exploited for the generation of strut-and-tie models (STMs) in concrete structures. The article deals with the generation of STMs by solving a complianc...
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Published in | Engineering optimization Vol. 53; no. 7; pp. 1251 - 1272 |
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Main Authors | , |
Format | Journal Article |
Language | English |
Published |
Abingdon
Taylor & Francis
03.07.2021
Taylor & Francis Ltd |
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Online Access | Get full text |
ISSN | 0305-215X 1029-0273 |
DOI | 10.1080/0305215X.2020.1781843 |
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Abstract | Explicit topology optimization based on moving morphable components (MMCs) is a novel and revolutionary topology optimization framework that may be exploited for the generation of strut-and-tie models (STMs) in concrete structures. The article deals with the generation of STMs by solving a compliance minimization problem subject to a volume constraint. The feasible STMs are generated by a set of components that can move, dilate, shrink, overlap and merge. A new extraction method is adopted to address the crucial problem that interprets the topology optimization results as the STM. Design examples of deep beams and corbels are presented to demonstrate the validity and effectiveness of the MMC-based topology optimization method as a rational and reliable design tool for concrete structures. Moreover, the high efficiency and the applicability of the proposed approach to the multiple load case are also investigated. |
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AbstractList | Explicit topology optimization based on moving morphable components (MMCs) is a novel and revolutionary topology optimization framework that may be exploited for the generation of strut-and-tie models (STMs) in concrete structures. The article deals with the generation of STMs by solving a compliance minimization problem subject to a volume constraint. The feasible STMs are generated by a set of components that can move, dilate, shrink, overlap and merge. A new extraction method is adopted to address the crucial problem that interprets the topology optimization results as the STM. Design examples of deep beams and corbels are presented to demonstrate the validity and effectiveness of the MMC-based topology optimization method as a rational and reliable design tool for concrete structures. Moreover, the high efficiency and the applicability of the proposed approach to the multiple load case are also investigated. |
Author | Qiao, Wenzheng Chen, Guorong |
Author_xml | – sequence: 1 givenname: Wenzheng surname: Qiao fullname: Qiao, Wenzheng email: qiaowzh@hhu.edu.cn organization: Department of Architecture, Lvliang University – sequence: 2 givenname: Guorong surname: Chen fullname: Chen, Guorong organization: College of Mechanics and Materials, Hohai University |
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SubjectTerms | Concrete Concrete structures Design optimization Metal matrix composites moving morphable components Optimization sensitivity analysis Strut and tie models topology description function Topology optimization |
Title | Generation of strut-and-tie models in concrete structures by topology optimization based on moving morphable components |
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