World's Best Scientists 2026 revealed!

D-Index & Metrics

Engineering and Technology

D-Index
39
Citations
5792
World Ranking
7728
National Ranking
262

Overview

Joško Ožbolt is affiliated with the University of Stuttgart in Germany and has focused research efforts primarily in the field of engineering, with extensive work in civil and structural engineering.

Their research explores multiple subfields including:

  • Civil and Structural Engineering
  • Building and Construction
  • Materials Chemistry
  • Earth-Surface Processes
  • Environmental Engineering

Their main topics of investigation cover areas related to the behavior, response, and durability of concrete structures. These topics include:

  • Structural Behavior of Reinforced Concrete
  • Structural Response to Dynamic Loads
  • Fire Effects on Concrete Materials
  • Concrete Corrosion and Durability
  • Concrete and Cement Materials Research
  • Concrete Properties and Behavior
  • Structural Load-Bearing Analysis

Joško Ožbolt's recent publications demonstrate a focus on the mechanical behavior and durability of concrete under various conditions. Selected recent papers include:

  • "Dynamic fracture of concrete in compression: 3D finite element analysis at meso- and macro-scale," 2020, Continuum Mechanics and Thermodynamics
  • "Chloride Transport in Cracked Concrete Subjected to Wetting - Drying Cycles: Numerical Simulations and Measurements on Bridges Exposed to De-Icing Salts," 2020, Frontiers in Built Environment
  • "3D hygro-mechanical meso-scale model for wood," 2021, Construction and Building Materials
  • "Coupled hygro-mechanical meso-scale analysis of long-term creep and shrinkage of concrete cylinder," 2022, Engineering Structures
  • "Numerical and experimental investigation of anchor channels subjected to shear load in composite slabs with profiled steel decking," 2021, Engineering Structures

Joško Ožbolt has contributed multiple papers to prominent publication venues, including:

  • Engineering Structures
  • CivilEng
  • Construction and Building Materials
  • Materials
  • Continuum Mechanics and Thermodynamics

The scientist collaborates regularly with several coauthors, among them:

  • Serena Gambarelli
  • Sekandar Zadran
  • Anton Bogdanić
  • Daniele Casucci
  • Kaipei Tian

Best Publications

  • Nonlocal microplane model for fracture, damage, and size effect in structures

    Zdenek P. Bazant;Joško Ozbolt

  • Microplane model for concrete with relaxed kinematic constraint

    Joško Ožbolt;Yijun Li;Ivica Kožar

  • Dynamic fracture of concrete – compact tension specimen

    Joško Ožbolt;Akanshu Sharma;Hans-Wolf Reinhardt

  • State-of-the-art review on the bond properties of corroded reinforcing steel bar

    Hongwei Lin;Yuxi Zhao;Peng Feng;Hailong Ye

  • Bond Characteristics of Carbon, Alkali Resistant Glass, and Aramid Textiles in Mortar

    Shilang Xu;Markus Krüger;Hans Wolf Reinhardt;Joško Ožbolt

  • 3D Numerical modelling of steel corrosion in concrete structures

    Joško Ožbolt;Joško Ožbolt;Gojko Balabanić;Marija Kušter

  • Dynamic fracture of concrete compact tension specimen: Experimental and numerical study

    Joško Ožbolt;Josipa Bošnjak;Emiliano Sola

  • Permeability measurement on high strength concrete without and with polypropylene fibers at elevated temperatures using a new test setup

    Josipa Bošnjak;Joško Ožbolt;Rolf Hahn

  • NUMERICAL SMEARED FRACTURE ANALYSIS: NONLOCAL MICROCRACK INTERACTION APPROACH

    J. Ožbolt;Z. P. Bažant

  • The bond behavior between concrete and corroded steel bar under repeated loading

    Hongwei Lin;Hongwei Lin;Yuxi Zhao;Joško Ožbolt;Reinhardt Hans-Wolf

  • Modelling the effect of damage on transport processes in concrete

    Joško Ožbolt;Gojko Balabanić;Goran Periškić;Marija Kušter

  • Analytical model for the bond stress-slip relationship of deformed bars in normal strength concrete

    Hongwei Lin;Hongwei Lin;Yuxi Zhao;Josko Ozbolt;Peng Feng

  • FRACTURE SIZE EFFECT : REVIEW OF EVIDENCE FOR CONCRETE STRUCTURES

    Zdenek P. Bazant;Josko Ozbolt;Rolf Eligehausen

  • Microplane Model for Cyclic Triaxial Behavior of Concrete

    J Ozbolt;Z P Bazant

  • Modeling damage in concrete caused by corrosion of reinforcement: coupled 3D FE model

    Joško Ožbolt;Filip Oršanić;Gojko Balabanić;Marija Kušter

  • Numerical simulation of reinforced concrete beams with different shear reinforcements under dynamic impact loads

    Joško Ožbolt;Akanschu Sharma;Akanschu Sharma

  • Tensile behavior of concrete under high loading rates

    Joško Ožbolt;Akanshu Sharma;Barış İrhan;Emiliano Sola

  • 3D numerical analysis of reinforced concrete beams exposed to elevated temperature

    Joško Ožbolt;Josipa Bošnjak;Goran Periškić;Akanshu Sharma;Akanshu Sharma

  • Modeling pull-out resistance of corroded reinforcement in concrete: Coupled three-dimensional finite element model

    Joško Ožbolt;Filip Oršanić;Gojko Balabanić

  • Bond strength evaluation of corroded steel bars via the surface crack width induced by reinforcement corrosion

    Hongwei Lin;Yuxi Zhao;Joško Ožbolt;Hans-Wolf Reinhardt

  • Influence of loading rate on concrete cone failure

    Joško Ožbolt;Kamran Rah;Darko Meštrović

  • 3D FE analysis of anchor bolts with large embedment depths

    Joško Ožbolt;Rolf Eligehausen;Goran Periškić;Utz Mayer

Frequent Co-Authors

Roman Lackner
Roman Lackner University of Innsbruck
Shilang Xu
Shilang Xu Zhejiang University
Jean-Marc Franssen
Jean-Marc Franssen University of Liège
Zdeněk P. Bažant
Zdeněk P. Bažant Northwestern University

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