High Performance Fiber Reinforced Cement Composites 6

HPFRCC 6

ISBN: 978-94-007-2435-8 (Print) 978-94-007-2436-5 (Online)

Table of contents (66 chapters)

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  1. Front Matter

    Pages -

  2. Composite Properties in the Fresh and Hardened States

    1. Front Matter

      Pages 1-1

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      Book Chapter

      Pages 3-10

      Strength Dependent Tensile Behavior of Strain Hardening Fiber Reinforced Concrete

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      Book Chapter

      Pages 11-18

      Tailoring SHCC Made of Steel Cords and Plastic Fibers

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      Book Chapter

      Pages 19-26

      Model of Hooked Steel Fibers Reinforced Concrete under Tension

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      Book Chapter

      Pages 27-34

      Use of Double Punch Test to Evaluate the Mechanical Performance of Fiber Reinforced Concrete

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      Book Chapter

      Pages 35-42

      Determining Specimen Size Influences on FRC Response Using the Digital Image Correlation Technique

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      Book Chapter

      Pages 43-50

      Connecting Non-destructive Fiber Dispersion Measurements with Tensile HPFRCC Behavior

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      Book Chapter

      Pages 51-58

      Improved Tensile Performance with Fiber Reinforced Self-compacting Concrete

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      Book Chapter

      Pages 59-66

      The Impact of Rheology on the Mechanical Performance of Steel Fiber-Reinforced Concrete

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      Book Chapter

      Pages 67-74

      Quantification of Fresh and Mechanical Properties of HFRCC by Excess Paste Thickness

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      Book Chapter

      Pages 75-82

      An Investigation of Mechanical Properties of Jute Fiber-Reinforced Concrete

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      Book Chapter

      Pages 83-90

      Back-Calculation of Tensile Properties of Strain Softening and Hardening Cement Composites

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      Book Chapter

      Pages 91-98

      Basis of a Finite-Element Simulation Tool to Predict the Flexural Behavior of SFRC Prisms

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      Book Chapter

      Pages 99-106

      Multifunctional Carbon Black Engineered Cementitious Composites for the Protection of Critical Infrastructure

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      Book Chapter

      Pages 107-114

      Effects of Fiber Dispersion and Flaw Size Distribution on the Composite Properties of PVA-ECC

  3. Bond and Pull-Out Mechanisms

    1. Front Matter

      Pages 115-115

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      Book Chapter

      Pages 117-125

      Groups of Physical Parameters Influencing the Three Stages Pull-Out Behavior of Glass Multi-filament Yarns Embedded in Micro-concrete

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      Book Chapter

      Pages 127-135

      Tailor-Made Steel Fiber Reinforced Ultra High Performance Concrete – Single Fiber Pull-Out, Bending Capacity and Fracture Toughness

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      Book Chapter

      Pages 137-144

      Study on Size Effect in Bond Splitting Behavior of ECC

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      Book Chapter

      Pages 145-152

      Experimental and Nonlinear Finite Element Analysis of Fiber-Cementitious Matrix Bond-Slip Mechanism

  4. Durability

    1. Front Matter

      Pages 153-153

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      Book Chapter

      Pages 155-162

      Self-healing of Engineered Cementitious Composites in the Natural Environment

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      Book Chapter

      Pages 163-170

      Resistance to Corrosion Induced Cracking in Self Consolidating Hybrid Fiber Reinforced Concrete

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