Simulating Tensile and Compressive Failure Process of Concrete with a User-defined Bonded-Particle Model
Abstract A user-defined bonded-particle model (UBM) which is based on the modified parallel bond was established in this paper to investigate the tensile and compressive failure mechanism of concrete on the three-dimensional (3D) level. The contact constitutive relation and the failure criterion of...
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Series: | International Journal of Concrete Structures and Materials |
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Online Access: | http://link.springer.com/article/10.1186/s40069-018-0292-1 |
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doaj-0996b50300ae44fab22d76279caad4472020-11-25T01:36:26ZengSpringerOpenInternational Journal of Concrete Structures and Materials1976-04852234-13152018-09-0112111810.1186/s40069-018-0292-1Simulating Tensile and Compressive Failure Process of Concrete with a User-defined Bonded-Particle ModelJinhui Ren0Zhenghong Tian1Jingwu Bu2College of Water Conservancy and Hydropower Engineering, Hohai UniversityCollege of Water Conservancy and Hydropower Engineering, Hohai UniversityCollege of Water Conservancy and Hydropower Engineering, Hohai UniversityAbstract A user-defined bonded-particle model (UBM) which is based on the modified parallel bond was established in this paper to investigate the tensile and compressive failure mechanism of concrete on the three-dimensional (3D) level. The contact constitutive relation and the failure criterion of the UBM can be added to the commercial discrete element software PFC$$^{3D}$$ 3D by compiling them as a dynamic link library file and loading it into PFC$$^{3D}$$ 3D whenever needed. In addition, the aggregate particles can be generated according to the volume fraction and the shape of each aggregate is irregular. Then, by comparing the results of numerical simulation with the results of laboratory tests, it is found that this bonded-particle model can simulate the tensile and compressive failure process of concrete well to a certain extent. Specifically, the two have basically similar failure patterns and stress–strain responses no matter under tension or compression loading condition. All results indicate that this UBM is a promising tool in understanding and predicting the tensile and compressive failure process of concrete.http://link.springer.com/article/10.1186/s40069-018-0292-1three-dimensional simulationfailure processconcreteuser-defined bonded-particle modelPFC $$^{3D}$$ 3 D |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Jinhui Ren Zhenghong Tian Jingwu Bu |
spellingShingle |
Jinhui Ren Zhenghong Tian Jingwu Bu Simulating Tensile and Compressive Failure Process of Concrete with a User-defined Bonded-Particle Model International Journal of Concrete Structures and Materials three-dimensional simulation failure process concrete user-defined bonded-particle model PFC $$^{3D}$$ 3 D |
author_facet |
Jinhui Ren Zhenghong Tian Jingwu Bu |
author_sort |
Jinhui Ren |
title |
Simulating Tensile and Compressive Failure Process of Concrete with a User-defined Bonded-Particle Model |
title_short |
Simulating Tensile and Compressive Failure Process of Concrete with a User-defined Bonded-Particle Model |
title_full |
Simulating Tensile and Compressive Failure Process of Concrete with a User-defined Bonded-Particle Model |
title_fullStr |
Simulating Tensile and Compressive Failure Process of Concrete with a User-defined Bonded-Particle Model |
title_full_unstemmed |
Simulating Tensile and Compressive Failure Process of Concrete with a User-defined Bonded-Particle Model |
title_sort |
simulating tensile and compressive failure process of concrete with a user-defined bonded-particle model |
publisher |
SpringerOpen |
series |
International Journal of Concrete Structures and Materials |
issn |
1976-0485 2234-1315 |
publishDate |
2018-09-01 |
description |
Abstract A user-defined bonded-particle model (UBM) which is based on the modified parallel bond was established in this paper to investigate the tensile and compressive failure mechanism of concrete on the three-dimensional (3D) level. The contact constitutive relation and the failure criterion of the UBM can be added to the commercial discrete element software PFC$$^{3D}$$ 3D by compiling them as a dynamic link library file and loading it into PFC$$^{3D}$$ 3D whenever needed. In addition, the aggregate particles can be generated according to the volume fraction and the shape of each aggregate is irregular. Then, by comparing the results of numerical simulation with the results of laboratory tests, it is found that this bonded-particle model can simulate the tensile and compressive failure process of concrete well to a certain extent. Specifically, the two have basically similar failure patterns and stress–strain responses no matter under tension or compression loading condition. All results indicate that this UBM is a promising tool in understanding and predicting the tensile and compressive failure process of concrete. |
topic |
three-dimensional simulation failure process concrete user-defined bonded-particle model PFC $$^{3D}$$ 3 D |
url |
http://link.springer.com/article/10.1186/s40069-018-0292-1 |
work_keys_str_mv |
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