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Mechanical Properties of High-Strength Pervious Concrete with Steel Fiber or Glass Fiber
Ming Gin Lee,
Wei Chien Wang
,
Yung Chih Wang
, Yi Cheng Hsieh, Yung Chih Lin
土木工程學系
研究成果
:
雜誌貢獻
›
期刊論文
›
同行評審
25
引文 斯高帕斯(Scopus)
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Keyphrases
Mechanical Properties
100%
Steel Fiber
100%
High Strength
100%
Pervious Concrete
100%
Flexural Strength
30%
Porosity
15%
Reinforced
15%
Compressive Strength
15%
Permeability Coefficient
15%
Fiber-reinforced
15%
Normal Strength
15%
Quality Control
7%
Elastic Modulus
7%
Water Permeability
7%
High Compressive Strength
7%
Aggregate Size
7%
Technical Specification
7%
Bearing Capacity
7%
Concrete Specimen
7%
Porous Concrete
7%
Toughness Index
7%
Structural Concrete
7%
Green Building Materials
7%
Sustainable Building Materials
7%
Fiber Strength
7%
Fiber Mixture
7%
Flexural Toughness
7%
Porosity Coefficient
7%
Fiber-1
7%
Normal Mixture
7%
Modulus Studies
7%
High Strength Fiber
7%
Engineering
Steel Fiber
100%
Pervious Concrete
100%
Porosity
30%
Bending Strength
30%
Compression Strength
15%
Compressive Strength
15%
Test Result
7%
Peak Value
7%
Quality Control
7%
Bearing Capacity
7%
Control Group
7%
Permeability Coefficient
7%
Concrete Specimen
7%
Building Material
7%
Green Building
7%
Sustainable Building
7%
Day Compressive Strength
7%
Technical Specification
7%
Structural Concrete
7%
Modulus of Elasticity
7%
Material Science
Steel Fiber
100%
Glass Fiber
100%
Flexural Strength
50%
Compressive Strength
37%
Reinforced Concrete
25%
Elastic Moduli
12%
Building Material
12%
Bearing Capacity
12%