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Engineering
High-Performance Concrete
68%
Tensiles
50%
Modulus of Elasticity
35%
Ground Granulated Blast Furnace Slag
33%
Polymer
33%
Mass Concrete
29%
Temperature Stress
24%
Test Data
21%
Thermal Cracking
21%
Free Water
19%
Age Cracking
18%
Cement-Based Material
16%
Tensile Strain Capacity
16%
Adiabatic Temperature
16%
Temperature Rise
16%
Magnesium Potassium Phosphate
16%
Phosphate Cement
16%
Digital Twin
16%
Explainable Artificial Intelligence
16%
Repair Material
16%
Young's Modulus
16%
Built Environment
16%
Engineering Property
16%
Experimental Value
11%
Learning System
11%
Autogenous Shrinkage
10%
Concrete Wall
10%
Test Setup
9%
Cement Paste
8%
Test Result
8%
Testing Machine
7%
Tensile Test
7%
Limitations
7%
Coefficient of Thermal Expansion
7%
Applicability
7%
Modulus Value
7%
Magnesium Phosphate Cement
7%
Slag Cement
6%
Concrete Mixture
5%
Good Agreement
5%
Reduction Factor
5%
Loading Condition
5%
Nonlinearity
5%
Influencing Factor
5%
Empirical Model
5%
Manufacturing Energy
5%
Black-Box Model
5%
Interpretability
5%
Structural Property
5%
Black Box
5%
Keyphrases
High Performance Concrete
35%
Basic Tensile Creep
33%
Cracking Risk
18%
Tensile Creep
18%
Ground Granulated Blast Furnace Slag (GGBFS)
16%
Superabsorbent Polymer
16%
Zero-stress Temperature
16%
Specific Heat
16%
Restrained Strain
16%
Free Water
16%
Early-age Cracking
16%
Cement-based Materials
16%
Cement-based
16%
Concrete Creep
16%
Immobilization
16%
High Performance
16%
Stress Crack
16%
Cracking Temperature
16%
Dynamic Elastic Modulus
16%
Strain-based
16%
Tsetlin Machine
16%
AI Interpretability
16%
Ash Slag
16%
Age Dynamics
16%
Built Environment
16%
Digital Twin
16%
Elastic Modulus Evolution
14%
Machine Learning Models
11%
Static Modulus of Elasticity
10%
Concrete Wall
10%
Cement Blends
8%
Sustained Compressive Loading
8%
Different Types of Concrete
8%
Early-age Concrete
7%
Basic Creep
6%
Slag Cement
6%
Digital Space
5%
Physical World
5%
Structural Properties
5%
Interpreting Model
5%
Smart Built Environment
5%
Transparent Decision-Making
5%
Global Interpretation
5%
Local Interpretable Model-agnostic Explanations
5%
Model Output
5%
Black Box
5%
AI Paradigms
5%
Neural Network
5%
Limited Training Data
5%
Smart City Environment
5%
Material Science
High Performance Concrete
100%
Elastic Moduli
50%
Tensile Strain
16%
Potassium
16%
Polymer
16%
Magnesium
16%
Explainable Artificial Intelligence
16%
Drying Shrinkage
16%
Digital Twin
16%
Thermal Property
16%
Thermal Expansion
11%
Concrete Mixture
10%
Cement Paste
8%
Slag Cement
8%
Finite Element Method
8%
Thermal Conductivity
8%
Structural Property
5%
Ultimate Tensile Strength
5%