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Impact dynamics and energy dissipation capacity of fibre-reinforced self-compacting concrete plates
Erkan Kantar,
Yu Ping Yuen
*
, Veysel Kobya, J. S. Kuang
*
此作品的通信作者
土木工程學系
研究成果
:
Article
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同行評審
25
引文 斯高帕斯(Scopus)
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Keyphrases
Impact Energy
100%
Dynamic Power Dissipation
100%
Concrete Plate
100%
Impact Dynamics
100%
Self-compacting Concrete
100%
Energy Dissipation Capacity
100%
Fiber Reinforced Self-compacting Concrete
100%
Impact Resistance
50%
Fiber-reinforced
50%
Impact Loading
50%
Momentum Transfer
33%
Impact Force
33%
Coefficient of Restitution
33%
Fiber Content
33%
Popular
16%
Testing Apparatus
16%
Failure Mechanism
16%
Blowing
16%
Concrete Mix
16%
Transfer Length
16%
Rheological Properties
16%
Viable Solutions
16%
Damage Accumulation
16%
Drop Test
16%
Dynamic Mechanism
16%
Bridging Toughening
16%
Toughening Mechanism
16%
Impact Duration
16%
Segregation Resistance
16%
Impact Mechanism
16%
Dispersed Fibre
16%
Momentum Coefficient
16%
Crack Bridging
16%
Mega Construction
16%
Concrete Matrix
16%
Impact Coefficient
16%
Overall Impact
16%
Kinematic Response
16%
Dynamic Crack
16%
Engineering
Energy Dissipation
100%
Compacting Concrete
100%
Impact Dynamics
100%
Impact Loads
37%
Impact Resistance
37%
Stress Corrosion Cracking
37%
Momentum Transfer
25%
Impact Force
25%
Fiber Content
25%
Experimental Result
12%
Failure Mechanism
12%
Momentum Coefficient
12%
Impact Duration
12%
Concrete Matrix
12%
Toughening
12%
Crack Bridging
12%
Concrete Mixture
12%