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Creep Response of Rubberized Alkali-Activated Concrete
M. Elzeadani
, D. V. Bompa
,
A. Y. Elghazouli
Research output
:
Journal article publication
›
Journal article
›
Academic research
›
peer-review
10
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Citations (Scopus)
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Dive into the research topics of 'Creep Response of Rubberized Alkali-Activated Concrete'. Together they form a unique fingerprint.
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Keyphrases
Rubber Content
100%
Creep Response
100%
Rubberised Alkali-activated Concrete
100%
Creep
75%
One-part Alkali-activated Concrete
75%
Stress Level
50%
Creep Deformation
50%
Conventional Concrete
50%
Creep Coefficient
50%
Mechanical Properties
25%
Concrete Mix
25%
Fly Ash
25%
Elastic Modulus
25%
Two-level
25%
Compressive Strength
25%
Creep Strain
25%
Long-term Strength
25%
Strength Properties
25%
Prediction Model
25%
Blast Furnace Slag
25%
Creep Loading
25%
Natural Aggregate
25%
Mix Design
25%
Sustained Load
25%
Sodium Silicate
25%
Slowing down
25%
Sustained Loading
25%
Axial Crushing
25%
Solid Activator
25%
Aluminosilicate Precursor
25%
Ambient Curing
25%
Lateral Crushing
25%
Specific Creep
25%
Curing Deformation
25%
28-days Compressive Strength
25%
Crumb Rubber Particles
25%
Engineering
Tested Specimen
100%
Activated Concrete
100%
Rubber Content
100%
Stress Level
50%
Applied Stress
50%
Conventional Concrete
50%
Creep
50%
Mixing Design
25%
Natural Aggregate
25%
Concrete Mix
25%
Creep Strain
25%
Day Compressive Strength
25%
Blast Furnace Slag
25%
Activator
25%
Term Strength
25%
Rubber Particle
25%
Sodium
25%
Crushing Strain
25%
Mechanical Property
25%
Compression Strength
25%
Compressive Strength
25%
Modulus of Elasticity
25%
Crumb Rubber
25%