CONCRETE JOURNAL Vol.64, No.9, Sep. 2026
Japan Concrete Institute (JCI No.732)

contents


Let’s Reconsider the Classification Name ‘Yobi-Kyodo’ Used for Ready-Mixed Concrete
By T. Kishi

Special Issue: Practical Application in Society of Fiber-Reinforced Concrete


  1. General Overview
    1.1 Advances in Fiber Reinforced Concrete and Its Progress Toward Practical Application
    By Y. Uchida
  2. Systematization of Design and Construction, and Establishment of Codes and Standards
    2.1 Structural Design Considering Fiber Orientation According to the VFC Recommendations of JSCE
    By M. Kunieda, Y. Uchida and T. Miki
    2.2 Practical Application and Future Perspectives of High-Strength SFRC Structures
    By Y. Ishikawa
    2.3 Introduction of JIS, JCI, and ISO Standards for the Evaluation of Material Properties of FRCC
    By T. Kanakubo
  3. Advancements in Material and Construction Technologies, and Evaluation Methods
    3.1 Non-Destructive Testing Techniques for Quality Evaluation of VFC and Damage Detection in Repaired Structures
    By S. Watanabe and S. Kikuchi
    3.2 High-Performance Enhancement and Structural Applications of Fiber-Reinforced Cementitious Composites via Fiber Orientation Control in 3D Printing
    By H. Ogura
    3.3 Application of Fiber-Reinforced Concrete with Recycled Carbon Fibers to Slab-on-Grade
    By M. Tsuzuki, T. Kawanishi, T. Sasaki and T. Hirata
    3.4 Potential and Prospects of Finite Element Analysis for Evaluating the Mechanical Behavior of Fiber Reinforced Concrete
    By N. Ueda
  4. Implementation Technologies and Application Developments Supporting Social Infrastructure
    4.1 Development and Application of Bridge Decks Using UFC in Highway Bridges
    By T. Kosaka, T. Nishihara and H. Aoi
    4.2 Renewal Technology for Road Bridge Decks Using Ultra High Strength Fiber Reinforced Concrete
    By T. Kawanishi and K. Sasaki
    4.3 Performance Enhancement of Concrete Bridge Decks Using UHPFRC
    By T. Makita
    4.4 Application of Non-Steel Fiber Reinforced Lining Concrete in Expressway Tunnels
    By T. Suzuki and K. Kanefuji
    4.5 Application of Fiber Reinforced Concrete in East Japan Railway Company
    By J. Kino
    4.6 Simplification of Reinforcement Arrangement in L-shaped RC Member Joints by Using SFRC
    By H. Murata
    4.7 Seismic Reinforcement Method for RC Piers Using High-Strength Fiber-Reinforced Cementitious Composite Material
    By N. Sogabe, S. Yamanobe, Y. Watanabe and M. Fujishiro
    4.8 A Double-Plane Suspension Extradosed Bridge with Steel Fiber Reinforced Concrete Applied to the Web Panels and Ribs for Anchoring Stay Cable-Yadoriki Sousen Bridge, Shin-Tomei Expressway-
    By K. Nakatsumi, M. Kawane, M. Goto and K. Ikeuchi
    4.9 Damage Control Technology and Latest Construction Examples for Reinforced Concrete (RC) Buildings
    By M. Kojima
    4.10 Utilization of High Strength Fiber-Reinforced Concrete in Precast Products
    By T. Nozawa
    4.11 The Adoption of Rebar Substitution Technologies in Floor Slab Concrete
    By Y. Muroga and H. Dong
    4.12 Impact and Blast Resistance of Fiber Reinforced Concrete in Protective Structures
    By M. Beppu and M. Yamaguchi
    4.13 Follow-up Study on the Durability of Ultra-High Strength Fiber Reinforced Concrete (UFC)
    By Y. Watanabe and H. Musha
  5. Challenges for Further Dissemination and Future Perspectives
    5.1 Challenges in the Production, Transportation, and Handling of Returned Fiber-Reinforced Concrete
    By K. Tamataki
    5.2 Performance Evaluation Methods for Fiber-Reinforced Concrete Slabs Compared to Conventional RC Slabs
    By H. Koga and T. Ozawa
    5.3 Future Perspective for Fiber-Reinforced Concrete as a Next-Generation Material
    By T. Miki
    5.4 Global Trends and Future Perspectives of UHPFRC in Infrastructure
    By E. Brühwiler

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