Markus Lukacevic

About Markus Lukacevic

Markus Lukacevic, With an exceptional h-index of 18 and a recent h-index of 18 (since 2020), a distinguished researcher at Technische Universität Wien, specializes in the field of computational mechanics, fracture mechanics, wood, timber, masonry.

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

Calibrating failure surfaces for vertically perforated clay block masonry using a validated numerical unit cell model

Evaluation of moisture-induced stresses in wood cross-sections determined with a time-dependent, plastic material model during long-time exposure

The viscoelastic behavior of lignin: Quantification through nanoindentation relaxation testing on hot-pressed technical lignin samples from various origins

Lignin-Bonded Composites from Sawmill Byproducts

Size Effect of Large Glued Laminated Timber Beams-Contribution to the Ongoing Discussion

InnoCrossLam–adding knowledge towards increased use of cross laminated timber (CLT)

Prediction of moisture-induced cracks in wooden cross sections using finite element simulations

Multiscale micromechanics modeling of plant fibers: upscaling of stiffness and elastic limits from cellulose nanofibrils to technical fibers

Markus Lukacevic Information

University

Position

Institute for Mechanics of Materials and Structures Austria

Citations(all)

909

Citations(since 2020)

702

Cited By

401

hIndex(all)

18

hIndex(since 2020)

18

i10Index(all)

29

i10Index(since 2020)

27

Email

University Profile Page

Google Scholar

Markus Lukacevic Skills & Research Interests

computational mechanics

fracture mechanics

wood

timber

masonry

Top articles of Markus Lukacevic

Calibrating failure surfaces for vertically perforated clay block masonry using a validated numerical unit cell model

European Journal of Mechanics-A/Solids

2024/7/1

Evaluation of moisture-induced stresses in wood cross-sections determined with a time-dependent, plastic material model during long-time exposure

Buildings

2024/3/28

The viscoelastic behavior of lignin: Quantification through nanoindentation relaxation testing on hot-pressed technical lignin samples from various origins

Mechanics of Materials

2024/1/1

Lignin-Bonded Composites from Sawmill Byproducts

2023/7/6

Size Effect of Large Glued Laminated Timber Beams-Contribution to the Ongoing Discussion

2023/6/22

InnoCrossLam–adding knowledge towards increased use of cross laminated timber (CLT)

World Conference on Timber Engineering (WCTE), Oslo, Norway

2023/6

Prediction of moisture-induced cracks in wooden cross sections using finite element simulations

Wood Science and Technology

2023/4/27

Multiscale micromechanics modeling of plant fibers: upscaling of stiffness and elastic limits from cellulose nanofibrils to technical fibers

Materials and Structures

2023/2

Markus Lukacevic
Markus Lukacevic

H-Index: 11

Josef Füssl
Josef Füssl

H-Index: 19

Size effect of glued laminated timber beams predicted by numerical simulations

2023

Markus Lukacevic
Markus Lukacevic

H-Index: 11

Josef Füssl
Josef Füssl

H-Index: 19

Phase field method-based modeling of wood fracture

2023

Geometric Guidance for the Deployment of Elastic Geodesic Grids

arXiv preprint arXiv:2312.17181

2023/12/28

Markus Lukacevic
Markus Lukacevic

H-Index: 11

Przemyslaw Musialski
Przemyslaw Musialski

H-Index: 10

Micromechanics-Guided Nanoindentation of Five Hot-Pressed Lignins Extracted From Different Feedstocks

2023

Numerical Simulation of Moisture-Induced Cracking in Indoor Climate

2023

Numerical simulation of CLT moisture uptake and dry-out following water infiltration through end-grain surfaces

Journal of Building Engineering

2023/11/7

Simulation of Wood Fracture Mechanics Using the Phase Field Method for Fracture

2023

Micromechanics of non-embedded spruce wood: Novel polishing and indentation protocol

Materials Today: Proceedings

2023/5/16

Size effect on bending strength of glued laminated timber predicted by a numerical simulation concept including discrete cracking

Materials & Design

2023/1/1

Markus Lukacevic
Markus Lukacevic

H-Index: 11

Josef Füssl
Josef Füssl

H-Index: 19

Characterization of Mechanical Properties of Five Hot-Pressed Lignins Extracted from Different Feedstocks by Micromechanics-Guided Nanoindentation

2023

A numerical unit cell model for predicting the failure stress state of vertically perforated clay block masonry under arbitrary in-plane loads

Engineering Structures

2023/10/15

Influence of the lignin content as a natural adhesive in biocomposites using holocellulose and Asplund fibers from spruce wood

2023/9/25

See List of Professors in Markus Lukacevic University(Technische Universität Wien)

Co-Authors

academic-engine