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INIS
air
16%
applications
27%
ashes
19%
assessments
16%
blast furnaces
41%
cements
29%
comparative evaluations
14%
compression strength
50%
construction
38%
curing
26%
design
16%
durability
15%
energy
14%
energy storage
23%
evaluation
53%
expansion
43%
fibers
19%
fluidized-bed combustion
18%
fly ash
74%
foundations
19%
fumes
27%
furnaces
48%
glass
33%
investigations
14%
laboratories
16%
mechanical properties
22%
mixtures
100%
mortars
50%
oxygen
48%
performance
65%
piles
21%
porosity
14%
portland cement
25%
powders
53%
reactivity
33%
roads
23%
sand
28%
silica
74%
slags
88%
soils
33%
solutions
22%
stabilization
28%
steels
14%
sulfates
48%
surfaces
18%
swelling
14%
thermal conductivity
19%
thermal properties
15%
wastes
45%
water
22%
Engineering
Activation Energy
9%
Aerated Concrete
10%
Alkali Silica Reaction
23%
Autoclave Aerated Concrete
16%
Base Course
15%
Basic Oxygen Furnace
48%
Cementitious System
7%
Circulating Fluidized Bed Combustion
7%
Compressed Air
8%
Compression Strength
39%
Compressive Strength
39%
Concrete Mixture
9%
Curing Condition
6%
Diaphragm
7%
Energy Storage
8%
Engineered Cementitious Composite
12%
Fluidized Bed Combustion
13%
Frost Resistance
7%
Furnace Slag
48%
Geopolymer
23%
Glass Powder
7%
Ground Granulated Blast Furnace Slag
37%
Mechanical Property
10%
Melting Point
7%
Mineral Sequestration
7%
Mixing Design
13%
Ordinary Portland Cement
24%
Pile Foundations
13%
Portland Cement
8%
Reactive powder concrete
11%
Road
23%
Road Construction
7%
Silica Fume
16%
Silicon Dioxide
36%
Slag Aggregate
12%
Stabilizer
8%
Steel Slag
7%
Strength Development
7%
Structural Response
8%
Subgrade
6%
Sulfate Attack
11%
Supplementary Cementitious Material
11%
Temperature Distribution
8%
Test Method
14%
Test Period
6%
Test Result
25%
Thaw Resistance
8%
Thermal Conductivity
14%
Thermal Performance
7%
Unreinforced Masonry
9%
Keyphrases
Aerated Concrete
13%
Alkali-silica Reaction
13%
ASTM C1260
11%
Basic Oxygen Furnace Slag
21%
Circulating Fluidized Bed Combustion Ash
7%
Class F Fly Ash
11%
Compressive Strength
23%
Concrete Mix
11%
Engineered Cementitious Composites
11%
Expansion Characteristics
9%
External Sulfate Attack
5%
Fly Ash
12%
Freeze-thaw Resistance
7%
Frost Resistance
7%
Furnace Slag Aggregates
7%
Geopolymer Mixture
7%
Ground Granulated Blast Furnace Slag (GGBFS)
16%
Kazakhstan
6%
Mortar Mixtures
5%
Non-autoclaved Aerated Concrete
12%
Ordinary Portland Cement
9%
Performance-based
5%
Porosity
9%
Reactive Powder Concrete
15%
Response Surface Methodology
11%
Silica Fume
14%
Strength Characteristics
8%
Supplementary Cementitious Materials
5%
Thermal Conductivity
9%
Thermal Properties
5%
Unreinforced Masonry Wall
7%