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Fatigue tests of cracked steel plates strengthened with UHM CFRP plates
Chao Wu
,
Xiao Ling Zhao
, Riadh Al-Mahaidi
, Mohammad Emdad
, Wenhui Duan
Research output
:
Journal article publication
›
Journal article
›
Academic research
›
peer-review
105
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Citations (Scopus)
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Keyphrases
Fatigue Test
100%
Carbon Fiber Reinforced Polymer Plate
100%
Cracked Steel Plate
100%
Steel Plate Strengthening
100%
Ultra-high Modulus Carbon Fibres
100%
Carbon Fiber Reinforced Polymer
66%
Young's Modulus
50%
Steel Plate
33%
Fatigue Performance
33%
Prestress
16%
Bond Length
16%
Steel Structures
16%
Fatigue Crack Propagation
16%
Fatigue Crack
16%
Fatigue Life
16%
Stress Intensity Factor
16%
High Young's Modulus
16%
Initial Crack
16%
Carbon Effect
16%
Crack Surface
16%
Tension Test
16%
Strengthening Configuration
16%
Fatigue Repair
16%
Fatigue Crack Tip
16%
Constant Amplitude Fatigue
16%
Marking Techniques
16%
Repair Effectiveness
16%
Strengthening Effectiveness
16%
Fatigue Loading
16%
Engineering
Mechanical Fatigue Test
100%
Steel Plate
100%
Carbon Fibre Reinforced Polymer
100%
Young's Modulus
40%
Fatigue Performance
20%
Fatigue Crack
20%
Experimental Result
10%
Steel Structure
10%
Fatigue Loading
10%
Crack Tip
10%
Stress-Intensity Factor
10%
Initial Crack
10%
Crack Surface
10%
Constant Amplitude
10%
Fatigue Crack Propagation
10%
Fatigue Life
10%
Prestressing
10%
Material Science
Carbon Fiber
100%
Reinforced Plastic
100%
Young's Modulus
40%
Fatigue Crack
30%
Fatigue of Materials
10%
Tensile Testing
10%
Stress Intensity Factor
10%
Crack Propagation
10%
Surface Crack
10%
Crack Tip
10%