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Primer for FRP Strengthening of Structurally Deficient Bridges
Although fiber-reinforced polymers (FRP) have been used widely in the aerospace and automobile industries, its use in bridges is relatively new. The advantages of FRP for specific applications result in it being used more and more frequently for structural engineering applications, especially for strengthening and retrofitting existing structures made of reinforced concrete or masonry. One area in which FRP is being used more frequently is the strengthening of structurally deficient concrete bridges.
Primer for FRP Strengthening of Structurally Deficient Bridges
Although fiber-reinforced polymers (FRP) have been used widely in the aerospace and automobile industries, its use in bridges is relatively new. The advantages of FRP for specific applications result in it being used more and more frequently for structural engineering applications, especially for strengthening and retrofitting existing structures made of reinforced concrete or masonry. One area in which FRP is being used more frequently is the strengthening of structurally deficient concrete bridges.
Primer for FRP Strengthening of Structurally Deficient Bridges
S.-H. Park (author) / I. N. Robertson (author) / H. R. Riggs (author)
2002
94 pages
Report
No indication
English
Highway Engineering , Construction Equipment, Materials, & Supplies , Composite Materials , Transportation , Bridges(Structures) , Concrete structures , Composite materials , Structural design , Reinforcement(Structures) , Deficiencies , Retrofitting , Civil engineering , Structural analysis , Structural engineering , Mechanical properties , Damage assessment , Monitoring , Detection , Load rating , Bonding , Carbon , Flexural strength , Shear strength , Tensile strength , Fiber reinforcement polymers(FRP)
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