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Fiber Reinforced Polymer Composites (FRPs) demonstrate advantages over traditional building materials for civil engineering infrastructure, as long as their long-term durability is guaranteed. Use of FRPs in civil engineering differs from other areas, such as aerospace, particularly because civil engineering structures have a far longer service life. Durability of Fiber Reinforced Polymer Composites for Civil Engineering presents the fundamentals of FRP durability in civil engineering environments under well-defined boundary conditions. The title gives physiochemical properties and durability…mehr

Produktbeschreibung
Fiber Reinforced Polymer Composites (FRPs) demonstrate advantages over traditional building materials for civil engineering infrastructure, as long as their long-term durability is guaranteed. Use of FRPs in civil engineering differs from other areas, such as aerospace, particularly because civil engineering structures have a far longer service life. Durability of Fiber Reinforced Polymer Composites for Civil Engineering presents the fundamentals of FRP durability in civil engineering environments under well-defined boundary conditions. The title gives physiochemical properties and durability for FRPs used in civil engineering, the theory of long-term durability mechanisms and prediction models, and provides methods for the evaluation of FRPs when exposed to various conditions. More specifically, eight chapters cover an introduction to FRPs; the fundamentals of long-term durability; performance and adhesives; resin matrices; CFRPs; GFRPs; BFRPs; and evaluating and predicting durability for FRPs. This volume provides a solution to researchers and engineers designing high-performing and durable FRP structures for civil engineering.
Autorenporträt
Guijun Xian is a Professor in the School of Civil Engineering, at Harbin Institute of Technology, China. His research focuses on fiber reinforced polymer composites (FRPs) for civil engineering, durability, and applications of FRPs. He has worked on FRPs for civil engineering for over 20 years, at leading institutes in Germany, the USA, and China, and has published over 200 papers. His research focuses on high-performance FRPs and particularly their long-term durability.