Mechanical and morphological variations of basalt fiber in seawater and a strategy to improve its performance with nanocomposite sizing
Author:
Funder
Chinese Academy of Sciences
Publisher
Elsevier BV
Reference31 articles.
1. Corrosion propagation of steel reinforcement in pre-cracked mortar attacked by seawater using wire beam electrode;Feng;Corros. Sci.,2022
2. Durability of fiber reinforced polymer (FRP) in simulated seawater sea sand concrete (SWSSC) environment;Guo;Corros. Sci.,2018
3. Fiber-reinforced polymers bars for compression reinforcement: a promising alternative to steel bars;Elmessalami;Constr. Build. Mater.,2019
4. Effects of surface characteristics and alkalinity on the deterioration of BFRP bars and BFRP-SSC interface in seawater environment;Feng;Compos. B. Eng.,2024
5. Evaluation of prestressed basalt fiber and hybrid fiber reinforced polymer tendons under marine environment;Wang;Mater. Des.,2014
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1. Multifunctional basalt fiber reinforced polymer composites with in-situ damage self-sensing and temperature-sensitive behavior;Composites Communications;2024-10
2. Twisting process of basalt fibers in water: The effects of water on microscopic structure and spinning property;Colloids and Surfaces A: Physicochemical and Engineering Aspects;2024-10
3. Effect of seawater corrosion on the mechanical properties of basalt fiber reinforced polymer composites modified by silane coupling agent KH560 and carboxylated carbon nanotubes;Materials Today Communications;2024-08
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