Jae-Yeol Cho

Jae-Yeol Cho

Seoul National University

Professor

Department of Civil and Environmental Engineering

Research Area

  • #Materials science
  • #Structural engineering
  • #Composite material
  • #Compressive strength
  • #Ductility
  • #Geotechnical engineering
  • #Prestressed concrete
  • #Split-Hopkinson pressure bar
  • #Fibre-reinforced plastic
  • #Flexural strength

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Related papers to
‘ Materials science ‘ : 11

  • Compressive Behavior of Fiber-Reinforced Concrete with End-Hooked Steel Fibers

    2015/03

    2.7 Impact Factor

    100 citations

    Seong-Cheol Lee, Joung-Hwan Oh, Jae-Yeol Cho

    DOI : 10.3390/MA8041442

    • #Materials science
    • #Composite material
    • #Structural engineering
    • #Fiber
    • #Compression (physics)
    • #Compressive strength
    • #Ductility
    • #Cylinder
    • #Elastic modulus
    • #Uniaxial compression
    • #Fiber-reinforced concrete

All papers authored by
‘ Jae-Yeol Cho ’ : 12

  • Compressive Behavior of Fiber-Reinforced Concrete with End-Hooked Steel Fibers

    2015/03
    MATERIALS

    2.7 Impact Factor

    100 citations

    Seong-Cheol Lee, Joung-Hwan Oh, Jae-Yeol Cho

    DOI : 10.3390/MA8041442

    • #Materials science
    • #Composite material
    • #Structural engineering
    • #Fiber
    • #Compression (physics)
    • #Compressive strength
    • #Ductility
    • #Cylinder
    • #Elastic modulus
    • #Uniaxial compression
    • #Fiber-reinforced concrete

Related papers to
‘ Materials science ‘ : 11

  • Compressive Behavior of Fiber-Reinforced Concrete with End-Hooked Steel Fibers

    2015/03
    MATERIALS

    2.7 Impact Factor

    100 citations

    Seong-Cheol Lee, Joung-Hwan Oh, Jae-Yeol Cho

    DOI : 10.3390/MA8041442

    • #Materials science
    • #Composite material
    • #Structural engineering
    • #Fiber
    • #Compression (physics)
    • #Compressive strength
    • #Ductility
    • #Cylinder
    • #Elastic modulus
    • #Uniaxial compression
    • #Fiber-reinforced concrete
  • Pure rate effect on the concrete compressive strength in the split Hopkinson pressure bar test

    2018/03
    INTERNATIONAL JOURNAL OF IMPACT ENGINEERING

    3.2 Impact Factor

    26 citations

    Sangho Lee, Kyoung Min Kim, Ja-Min Park, Jae-Yeol Cho

    DOI : 10.1016/J.IJIMPENG.2017.11.015

    • #Materials science
    • #Structural engineering
    • #Finite element method
    • #Acceleration
    • #Compressive strength
    • #Inertia
    • #Non conservative
    • #Split-Hopkinson pressure bar

Get access to
Contact information

Log in

All papers authored by
‘ Jae-Yeol Cho ’ : 12

  • Compressive Behavior of Fiber-Reinforced Concrete with End-Hooked Steel Fibers

    2015/03
    MATERIALS

    2.7 Impact Factor

    100 citations

    Seong-Cheol Lee, Joung-Hwan Oh, Jae-Yeol Cho

    DOI : 10.3390/MA8041442

    • #Materials science
    • #Composite material
    • #Structural engineering
    • #Fiber
    • #Compression (physics)
    • #Compressive strength
    • #Ductility
    • #Cylinder
    • #Elastic modulus
    • #Uniaxial compression
    • #Fiber-reinforced concrete
  • Pure rate effect on the concrete compressive strength in the split Hopkinson pressure bar test

    2018/03
    INTERNATIONAL JOURNAL OF IMPACT ENGINEERING

    3.2 Impact Factor

    26 citations

    Sangho Lee, Kyoung Min Kim, Ja-Min Park, Jae-Yeol Cho

    DOI : 10.1016/J.IJIMPENG.2017.11.015

    • #Materials science
    • #Structural engineering
    • #Finite element method
    • #Acceleration
    • #Compressive strength
    • #Inertia
    • #Non conservative
    • #Split-Hopkinson pressure bar

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