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COmputationally Driven design of Innovative CEment-based materials
Wenzhong Zhu
School of Computing, Engineering and Physical Sciences
Research output
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Dive into the research topics of 'COmputationally Driven design of Innovative CEment-based materials'. Together they form a unique fingerprint.
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Engineering
Nanoscale
100%
Cement-Based Material
100%
Degradation Process
100%
Intrinsic Property
100%
Mechanical Performance
100%
Processing Variable
100%
Construction Sector
100%
Durables
100%
Intrinsic Nature
100%
Cementitious Matrix
100%
Bearing Capacity
100%
Multiscale Modeling
100%
Service Life
100%
Keyphrases
Cement-based Materials
100%
C-S-H Gel
100%
Design Basis
100%
Calcium-silicate-hydrate (C-S-H)
60%
Cementitious Materials
40%
Aging
20%
Low Density
20%
Mechanical Properties
20%
Nanoindentation Test
20%
Degradation Process
20%
Construction Sector
20%
High Stiffness
20%
High Density
20%
Mechanical Performance
20%
Intrinsic Properties
20%
Low Stiffness
20%
Simulation Scheme
20%
Cement Sector
20%
Macroscopical
20%
Bearing Capacity
20%
Cement Matrix
20%
Parameter Passing
20%
Osteoporosis
20%
Low Maintenance Costs
20%
Intrinsic Nature
20%
Multiscale Modeling
20%
Processing Parameters
20%
Capacity Simulation
20%
Complementary Actions
20%
Strong Simulation
20%
Conventional Design
20%
Main Active Ingredients
20%
Structural Evolution
20%
Life Service
20%
Material Science
Density
100%
Cementitious Material
100%
Nanoindentation
50%
Bearing Capacity
50%
Multi-Scale Modeling
50%