Josef Eberhardsteiner

About Josef Eberhardsteiner

Josef Eberhardsteiner, With an exceptional h-index of 36 and a recent h-index of 22 (since 2020), a distinguished researcher at Technische Universität Wien, specializes in the field of material characterisation and material modeling.

His recent articles reflect a diverse array of research interests and contributions to the field:

An explicit updated Lagrangian fragile points method for dynamic fracture simulations

Numerical modeling in timber engineering–moisture transport and quasi-brittle failure

Advanced Concepts for Modelling Failure and Transport Processes in Wood and Wood-Based Products

Methodology of Study of the Structure of Cement Materials by the Method of Nanoindentation

Computer-based modeling of moisture transport in wood-based materials

Computergestützte Modellierung von Feuchtetransportprozessen in Holzwerkstoffen.

Modeling approach to estimate the bending strength and failure mechanisms of glued laminated timber beams

Three-Minutes Creep Tests and Ultrasonic Experiments of Cementitious Materials at Early and Mature Ages

Josef Eberhardsteiner Information

University

Position

Professor Institute for Mechanics of Materials and Structures

Citations(all)

4484

Citations(since 2020)

1597

Cited By

3806

hIndex(all)

36

hIndex(since 2020)

22

i10Index(all)

94

i10Index(since 2020)

49

Email

University Profile Page

Google Scholar

Josef Eberhardsteiner Skills & Research Interests

material characterisation and material modeling

Top articles of Josef Eberhardsteiner

An explicit updated Lagrangian fragile points method for dynamic fracture simulations

Engineering Fracture Mechanics

2024/1/23

Numerical modeling in timber engineering–moisture transport and quasi-brittle failure

Rad Hrvatske akademije znanosti i umjetnosti. Tehničke znanosti

2023/9/7

Advanced Concepts for Modelling Failure and Transport Processes in Wood and Wood-Based Products

2023/9/6

Methodology of Study of the Structure of Cement Materials by the Method of Nanoindentation

2023

Computer-based modeling of moisture transport in wood-based materials

BAUTECHNIK

2022/10/1

Computergestützte Modellierung von Feuchtetransportprozessen in Holzwerkstoffen.

Bautechnik

2022

Modeling approach to estimate the bending strength and failure mechanisms of glued laminated timber beams

Engineering Structures

2022/3/15

Three-Minutes Creep Tests and Ultrasonic Experiments of Cementitious Materials at Early and Mature Ages

2022

Josef Eberhardsteiner
Josef Eberhardsteiner

H-Index: 22

Christian Hellmich
Christian Hellmich

H-Index: 34

Vorwort des Vorsitzenden und des stellvertretenden Vorsitzenden der Wissenschaftskommission beim BMLV

2022

Josef Eberhardsteiner
Josef Eberhardsteiner

H-Index: 22

Die Wissenschaftskommission beim BMLV, Funktionsperiode 2017-2022, Verteidigungsforschung-Verteidigung forschen, Sinne, Intelligenz und Technologie im 21. Jahrhundert

2022

Josef Eberhardsteiner
Josef Eberhardsteiner

H-Index: 22

Influence of nanoadditives on the Young’s modulus of cement

Materials Today: Proceedings

2022/1/1

Numerical assessment of wood moisture content-based assignments to service classes in EC 5 and a prediction concept for moisture-induced stresses solely using relative humidity …

Engineering Structures

2021/10/15

Effect of cast-in-place concrete application on moisture distribution in timber-concrete composite floors with notched connections, investigated via finite element simulations

Journal of Building Engineering

2021/10/1

Nanoindentation method for studying the structure of modified cement stone

Journal of Engineering Physics and Thermophysics

2021/9

Reinforced Concrete Hinges: Laboratory Testing, Finite Element Analysis, Design Recommendations (Rudolf Beer Lecture)

2021

Josef Eberhardsteiner
Josef Eberhardsteiner

H-Index: 22

Influence of Nano-Additives on the Elasticity of Cement

2021

Concrete Hinges: Laboratory Testing, Finite Element Analysis, Design Recommendations

2021

Johannes Kalliauer
Johannes Kalliauer

H-Index: 3

Josef Eberhardsteiner
Josef Eberhardsteiner

H-Index: 22

Structural Mechanics of Reinforced Concrete Hinges: From Laboratory Testing to Design Recommendations

2021

Computational mechanics concepts for wood-based products and timber structural elements

2021

Ultimate limits of reinforced concrete hinges

Engineering Structures

2020/12/1

Johannes Kalliauer
Johannes Kalliauer

H-Index: 3

Josef Eberhardsteiner
Josef Eberhardsteiner

H-Index: 22

See List of Professors in Josef Eberhardsteiner University(Technische Universität Wien)

Co-Authors

academic-engine