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Fracture Models and Effect of Fibers on Fracture Properties of Cementitious Composites-A Review

期刊

MATERIALS
卷 13, 期 23, 页码 -

出版社

MDPI
DOI: 10.3390/ma13235495

关键词

cementitious composites; model; polyvinyl alcohol fiber; steel fiber; fracture property

资金

  1. Open Projects Funds of Dike Safety and Disaster Prevention Engineering Technology Research Center of Chinese Ministry of Water Resources [2016001]
  2. State Key Laboratory of High Performance Civil Engineering Materials [2016CEM011]
  3. Program for Science & Technology Innovation Talents in Universities of Henan Province [21HASTIT013]
  4. National Natural Science Foundation of China [51979251]
  5. Program for Innovative Research Team (in Science and Technology) in University of Henan Province of China [20IRTSTHN009]

向作者/读者索取更多资源

Cementitious composites have good ductility and pseudo-crack control. However, in practical applications of these composites, the external load and environmental erosion eventually form a large crack in the matrix, resulting in matrix fracture. The fracture of cementitious composite materials causes not only structural insufficiency, but also economic losses associated with the maintenance and reinforcement of cementitious composite components. Therefore, it is necessary to study the fracture properties of cementitious composites for preventing the fracture of the matrix. In this paper, a multi-crack cracking model, fictitious crack model, crack band model, pseudo-strain hardening model, and double-K fracture model for cementitious composites are presented, and their advantages and disadvantages are analyzed. The multi-crack cracking model can determine the optimal mixing amount of fibers in the matrix. The fictitious crack model and crack band model are stress softening models describing the cohesion in the fracture process area. The pseudo-strain hardening model is mainly applied to ductile materials. The double-K fracture model mainly describes the fracture process of concrete. Additionally, the effects of polyvinyl alcohol (PVA) fibers and steel fibers (SFs) on the fracture properties of the matrix are analyzed. The fracture properties of cementitious composite can be greatly improved by adding 1.5-2% PVA fiber or 4% steel fiber (SF). The fracture property of cementitious composite can also be improved by adding 1.5% steel fiber and 1% PVA fiber. However, there are many problems to be solved for the application of cementitious composites in actual engineering. Therefore, further research is needed to solve the fracture problems frequently encountered in engineering.

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