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Rehabilitation of Concrete Structures with Fiber Reinforced Polymer
is a complete guide to the use of FRP in flexural, shear and axial
strengthening of concrete structures. Through worked design
examples, the authors guide readers through the details of usage,
including anchorage systems, different materials and methods of
repairing concrete structures using these techniques. Topics
include the usage of FRP in concrete structure repair, concrete
structural deterioration and rehabilitation, methods of structural
rehabilitation and strengthening, a review of the design basis for
FRP systems, including strengthening limits, fire endurance, and
environmental considerations. In addition, readers will find
sections on the strengthening of members under flexural stress,
including failure modes, design procedures, examples and anchorage
detailing, and sections on shear and torsion stress, axial
strengthening, the installation of FRP systems, and strengthening
against extreme loads, such as earthquakes and fire, amongst other
important topics.
This book describes the multi-axis substructure testing (MAST)
system, a simulator developed at Swinburne University of
Technology, Australia, which provides state-of-the-art technology
for large-scale hybrid testing of structures under realistic
scenarios depicting extreme events. The book also demonstrates the
responses of physical specimens while they serve as part of the
virtual computer model of the full structure subjected to extreme
dynamic forces. Experimental studies using the MAST system are
expected to enhance design and construction methods and
significantly improve the repair and retrofitting of structures
endangered by natural disasters and man-made hazards, providing a
direct benefit to society by improving public safety and the re
silience of the built environment. An additional benefit is
increased sustainability in the form of reduced direct and indirect
economic losses and social and environmental impacts in the face of
extreme events. This book will be of interest to researchers and
advanced practitioners in the fields of structural earthquake
engineering, geotechnical earthquake engineering, engineering
seismology, and experimental dynamics, including seismic
qualification.
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