Engineering
Plain Concrete
100%
Fiber-Reinforced Concrete
83%
Steel Fiber
66%
Crack Resistance
50%
Tensiles
50%
Concrete Structure
50%
Cement Paste
33%
Durability Performance
33%
Tensile Loads
33%
Properties of Concrete
33%
Compressive Strength
33%
Brittleness
33%
Structural Element
33%
Bending Strength
33%
Jute Fiber
33%
Reinforced Concrete
33%
Ultimate Tensile Strength
33%
Compression Strength
33%
Saudi Arabia
33%
Climatic Change
16%
Durables
16%
High-Performance Concrete
16%
Sustainable Development
16%
Natural Resource
16%
Microcrack
16%
Negative Impact
16%
Economic Benefit
16%
Experimental Investigation
16%
Frost Resistance
16%
Composite Structure
16%
Environmental Benefit
16%
Mechanical Performance
16%
Polymer Fiber
16%
Corrosion Behavior
16%
Adjustability
16%
Tensile Property
16%
Shear Property
16%
Peak Load
16%
Synthetic Aperture Radar
16%
Analytical Model
16%
Sound Insulation
16%
Cement Composite
16%
Initial Cost
16%
Cement Concrete
16%
Carbon Steel
16%
Climate Change
16%
Civil Engineering Structure
16%
Embodied Carbon
16%
Concrete Pavements
16%
Road Pavement
16%
Design Guideline
16%
Micro Crack
16%
Silica Fume
16%
Material Science
Natural Fiber
100%
Fiber Reinforced Concrete
62%
Ultimate Tensile Strength
50%
Steel Fiber
50%
Jute Fiber
37%
Polypropylene
37%
Reinforced Concrete
25%
Cement Paste
25%
Properties of Concrete
25%
Brittleness
25%
Compressive Strength
25%
Tensile Loads
25%
Composite Material
25%
High Performance Concrete
12%
Scanning Electron Microscopy
12%
Sound Insulation
12%
Microcrack
12%
Flexural Strength
12%
Building Material
12%
Corrosion
12%
Tensile Property
12%
Steel Rebar
12%
Silica Fume
12%
Residual Strength
12%
Carbon Steel
12%