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Article

Durability and Mechanical Properties of Nano-SiO2 and Polyvinyl Alcohol Fiber-Reinforced Cementitious Composites Subjected to Saline Freeze–Thaw Cycles

1
School of Civil Engineering and Transportation, Northeast Forestry University, Harbin 150040, China
2
Institute of Cold Regions Science and Engineering, Northeast Forestry University, Harbin 150040, China
3
Heilongjiang Province Academy of Cold Area Building Research, Harbin 150080, China
*
Author to whom correspondence should be addressed.
Materials 2024, 17(11), 2542; https://doi.org/10.3390/ma17112542
Submission received: 3 May 2024 / Revised: 16 May 2024 / Accepted: 21 May 2024 / Published: 24 May 2024

Abstract

To investigate the effects of nano-SiO2 (NS) and polyvinyl alcohol (PVA) fibers on the durability and mechanical properties of cementitious composites subjected to saline freeze–thaw cycling, a series of PVA fiber-reinforced cementitious composite (PFRCC) specimens were prepared using various fiber contents, and a series of NS and PVA fiber-reinforced cementitious composite (NPFRCC) specimens were prepared using various combinations of NS and fiber contents. Durability and fracture toughness tests were subsequently conducted on the specimens after different numbers of saline freeze–thaw cycles. The results indicate that the degradation of material properties can be divided into slow and accelerated damage stages before/after 50 freeze–thaw cycles. The durability and fracture toughness of the specimen series tended to increase, then decrease with increasing NS and PVA contents, suggesting optimum levels. When the PVA fiber content was 0.5%, PFRCC specimens had the best durability after saline freeze–thaw cycles; when the NS and PVA fiber contents were 1.0% and 0.5%, respectively, NPFRCC specimens had the best durability and fracture properties, and the initiation toughness, destabilization toughness, and fracture energy after 100 saline freeze–thaw cycles were 120.69%, 160.02%, and 451.31%, respectively. The results of this study may guide future exploration of the durability and mechanical properties of concrete subjected to freeze–thaw action.
Keywords: nano-silica; polyvinyl alcohol fiber; durability properties; synergistic effect; fracture toughness nano-silica; polyvinyl alcohol fiber; durability properties; synergistic effect; fracture toughness

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MDPI and ACS Style

Wan, L.; Zhao, Y.; Yu, M.; Tian, Y.; Wang, Y. Durability and Mechanical Properties of Nano-SiO2 and Polyvinyl Alcohol Fiber-Reinforced Cementitious Composites Subjected to Saline Freeze–Thaw Cycles. Materials 2024, 17, 2542. https://doi.org/10.3390/ma17112542

AMA Style

Wan L, Zhao Y, Yu M, Tian Y, Wang Y. Durability and Mechanical Properties of Nano-SiO2 and Polyvinyl Alcohol Fiber-Reinforced Cementitious Composites Subjected to Saline Freeze–Thaw Cycles. Materials. 2024; 17(11):2542. https://doi.org/10.3390/ma17112542

Chicago/Turabian Style

Wan, Lijun, Yongqi Zhao, Maopei Yu, Ye Tian, and Yipeng Wang. 2024. "Durability and Mechanical Properties of Nano-SiO2 and Polyvinyl Alcohol Fiber-Reinforced Cementitious Composites Subjected to Saline Freeze–Thaw Cycles" Materials 17, no. 11: 2542. https://doi.org/10.3390/ma17112542

APA Style

Wan, L., Zhao, Y., Yu, M., Tian, Y., & Wang, Y. (2024). Durability and Mechanical Properties of Nano-SiO2 and Polyvinyl Alcohol Fiber-Reinforced Cementitious Composites Subjected to Saline Freeze–Thaw Cycles. Materials, 17(11), 2542. https://doi.org/10.3390/ma17112542

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