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Impact of aluminate cements on the durability and mechanical performance of strain-hardening cementitious composites
Chung Chan Hung
*
, Anggun Tri Atmajayanti
, Valentine Chronica Domaria Meiji
,
Terry YP Yuen
, Doo Yeol Yoo
*
此作品的通信作者
土木工程學系
研究成果
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同行評審
15
引文 斯高帕斯(Scopus)
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深入研究「Impact of aluminate cements on the durability and mechanical performance of strain-hardening cementitious composites」主題。共同形成了獨特的指紋。
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Keyphrases
Aluminate Cement
100%
Calcium Aluminate
10%
Calcium Aluminate Cement
40%
Calcium Aluminate Phases
10%
Calcium Sulfoaluminate
40%
Calcium Sulfoaluminate Cement
10%
Cement-based Materials
10%
Chemical Phases
10%
Crack Opening
10%
Drying Shrinkage
10%
Ductile Fiber
10%
Durability Performance
100%
Early Strength Development
10%
Fiber Cement
10%
Fly Ash
20%
Fresh Properties
10%
Hardened Properties
10%
Hydration Effect
10%
Hydration Products
10%
Impermeability
10%
Knowledge Gaps
10%
Material Performance
10%
Mechanical Performance
100%
Microstructure
10%
Partial Replacement
20%
Pore Space
10%
Porosity
10%
Portland Cement
30%
SEM Analysis
10%
Setting Time
20%
Significant Knowledge
10%
Steady State
10%
Strain Softening
20%
Strain-hardening Cementitious Composites
100%
Strength Development
10%
Tensile Performance
10%
Tensile Strain Capacity
10%
Tensile Strain Hardening
10%
Workability
10%
XRD Analysis
10%
Ye'elimite
10%
Engineering
Aluminate Phase
8%
Calcium Aluminate
50%
Calcium Sulphoaluminate
41%
Cement-Based Material
8%
Cementitious Composite
100%
Crack Opening
8%
Drying Shrinkage
8%
Durability Performance
100%
Durables
8%
Early Strength Development
8%
Hardening Behavior
16%
Hydration Product
8%
Limitations
8%
Material Performance
8%
Mechanical Performance
100%
Partial Replacement
16%
Pore Space
8%
Porosity
8%
Portland Cement
25%
Rich Composition
8%
Setting Time
16%
Strain Hardening
100%
Strength Development
8%
Tensile Strain
8%
Tensile Strain Capacity
8%
Tensiles
8%
X-Ray Diffraction Analysis
8%
Material Science
Composite Material
100%
Phase Composition
8%
Portland Cement
25%
Scanning Electron Microscopy
8%
Tensile Strain
16%
Work Hardening
100%
X-Ray Diffraction
8%