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List of figures | p. vii |
List of tables | p. xi |
Preface | p. xii |
Introduction | p. 1 |
Building and infrastructure degradation | p. 2 |
Common causes of structural degradation | p. 2 |
The objectives and scope of renovation engineering | p. 5 |
Useful definitions | p. 6 |
Degradation of reinforced concrete structures | p. 8 |
Degradation caused by non-uniform dimensional changes | p. 9 |
Degradation caused by repeated loading | p. 19 |
Degradation caused by lack of durability | p. 25 |
Degradation caused by disasters | p. 62 |
Inspection and evaluation | p. 76 |
Preliminary investigation | p. 79 |
Detailed investigation and evaluation | p. 83 |
Non-destructive tests | p. 86 |
Reflected and transmitted waves | p. 118 |
Concrete strength assessment | p. 121 |
Surface cracking measurement | p. 127 |
Assessment of fire damage to concrete | p. 129 |
Bridge assessment | p. 132 |
Reinforced steel corrosion assessment | p. 138 |
Conventional repair and strengthening techniques | p. 147 |
Principal considerations of repair and strengthening techniques | p. 148 |
Repair materials | p. 152 |
Repair techniques | p. 177 |
Strengthening techniques | p. 235 |
Glass fiber reinforced plastics components for bridge deck replacement | p. 243 |
Introduction | p. 243 |
Materials | p. 244 |
Fabrication process and example systems | p. 245 |
Analysis of FRP bridge deck members | p. 251 |
Analysis of composite sections | p. 273 |
Summary | p. 277 |
Strengthening of reinforced concrete structures with fiber reinforced polymers | p. 278 |
Introduction | p. 278 |
Structural strengthening with bonded fiber reinforced polymer (FRP) | p. 280 |
Flexural strengthening of beams | p. 290 |
Design of beams strengthened in flexure | p. 301 |
Shearing strengthening of beams | p. 314 |
Strengthening of concrete columns | p. 321 |
Summary | p. 327 |
Bibliography | p. 328 |
Index | p. 342 |
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