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Author:

Yu, Wenxuan (Yu, Wenxuan.) | Jin, Liu (Jin, Liu.) (Scholars:金浏) | Zhang, Renbo (Zhang, Renbo.) | Du, Xiuli (Du, Xiuli.) (Scholars:杜修力)

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EI Scopus

Abstract:

Considering the characteristics of concrete mesocomponents, a mesoscale finite element analysis method is proposed in this paper. The static uniaxial compressive response of geometrically similar concrete cubes with different structural sizes at room and cryogenic temperatures is simulated. The degradation behavior of nominal strength of concrete under uniaxial compression at cryogenic temperature and the corresponding size effect are discussed.The results showed that as temperature decreases, the uniaxial nominal compressive strength significantly increases, the brittleness of concrete increases, and the size effect becomes more obvious. When the temperature reaches -120, the compressive strength and brittleness of concrete are the highest, exhibiting the strongest size effect. As the temperature is decreased further, the compressive strength decreases slightly within a narrow range. The classical Type- 2 size effect law can describe the size effect results obtained using the finite element analysis at different temperatures. © 2021, Science Press. All right reserved.

Keyword:

Finite element method Concretes Cryogenics Plasticity Size determination Fracture mechanics Compressive strength Failure (mechanical) Brittleness

Author Community:

  • [ 1 ] [Yu, Wenxuan]Key Laboratory of Urban Security and Disaster Engineering of Ministry of Education, Beijing University of Technology, Beijing; 100124, China
  • [ 2 ] [Jin, Liu]Key Laboratory of Urban Security and Disaster Engineering of Ministry of Education, Beijing University of Technology, Beijing; 100124, China
  • [ 3 ] [Zhang, Renbo]Key Laboratory of Urban Security and Disaster Engineering of Ministry of Education, Beijing University of Technology, Beijing; 100124, China
  • [ 4 ] [Zhang, Renbo]Department of Civil Engineering, Tsinghua University, Beijing; 100084, China
  • [ 5 ] [Du, Xiuli]Key Laboratory of Urban Security and Disaster Engineering of Ministry of Education, Beijing University of Technology, Beijing; 100124, China

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Source :

Scientia Sinica Technologica

ISSN: 1674-7259

Year: 2021

Issue: 3

Volume: 51

Page: 305-314

Cited Count:

WoS CC Cited Count: 0

SCOPUS Cited Count: 8

ESI Highly Cited Papers on the List: 0 Unfold All

WanFang Cited Count:

Chinese Cited Count:

30 Days PV: 4

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