bibtype C - Conference Paper (international conference)
ARLID 0640973
utime 20251121111857.1
mtime 20251106235959.9
title (primary) (eng) Finite element implementation of finite strain constitutive models formulated in the logarithmic strain space
specification
page_count 219 s.
media_type E
serial
ARLID cav_un_epca*0640651
ISBN 978-80-261-1254-9
title Computational mechanics 2025. Proceedings of computational mechanics 2025
page_num 132-135
publisher
place Plzeň
name University of West Bohemia in Pilsen
year 2025
editor
name1 Adámek
name2 V.
editor
name1 Jonášová
name2 A.
editor
name1 Plánička
name2 S.
keyword finite strain theory
keyword Hencky strain
keyword finite element method
keyword vectorization
author (primary)
ARLID cav_un_auth*0496429
name1 Moskovka
name2 Alexej
institution UT-L
full_dept (cz) D 5 - Ultrazvukové metody
full_dept (eng) D 5 - Ultrasonic Methods
country CZ
fullinstit Ústav termomechaniky AV ČR, v. v. i.
author
ARLID cav_un_auth*0255186
name1 Frost
name2 Miroslav
institution UT-L
full_dept (cz) D 5 - Ultrazvukové metody
full_dept D 5 - Ultrasonic Methods
full_dept D5 – Ultrasonic Methods
country CZ
fullinstit Ústav termomechaniky AV ČR, v. v. i.
author
ARLID cav_un_auth*0292941
name1 Valdman
name2 Jan
institution UTIA-B
full_dept (cz) Matematická teorie rozhodování
full_dept Department of Decision Making Theory
department (cz) MTR
department MTR
full_dept Department of Decision Making Theory
fullinstit Ústav teorie informace a automatizace AV ČR, v. v. i.
author
ARLID cav_un_auth*0084149
name1 Horák
name2 M.
country CZ
source
source_type pdf
url https://compmech.kme.zcu.cz/download/proceedings/CM2025_Conference_Proceedings.pdf
cas_special
project
project_id EH22_008/0004591
agency GA MŠk
country CZ
ARLID cav_un_auth*0465703
abstract (eng) This paper exemplifies the finite strain procedure based on the logarithmic strain approach and its numerical implementation, including the incorporation into FEM, on a three-dimensional linear elasticity model. The procedure encompasses both the pre-processing phase, in which the logarithmic strain measure is computed from displacements, the resolution of the constitutive model, and the post-processing phase, in which the fundamental quantities (stress tensor, tangent modulus) must be consistently transformed to comply with the particular FEM formulation.
action
ARLID cav_un_auth*0496430
name Computational Mechanics 2025 /40./
dates 20251103
mrcbC20-s 20251105
place Srní
country CZ
RIV JG
FORD0 20000
FORD1 20300
FORD2 20302
reportyear 2026
num_of_auth 4
mrcbC47 UTIA-B 10000 10100 10102
mrcbC52 4 O 4o 20251110121329.8
presentation_type PR
inst_support RVO:61388998
inst_support RVO:67985556
permalink https://hdl.handle.net/11104/0371275
confidential S
arlyear 2025
mrcbTft \nSoubory v repozitáři: 0640973_postprint_CompMech_25_Moskovka.pdf
mrcbU14 SCOPUS
mrcbU24 PUBMED
mrcbU34 WOS
mrcbU63 cav_un_epca*0640651 Computational mechanics 2025. Proceedings of computational mechanics 2025 University of West Bohemia in Pilsen 2025 Plzeň 132 135 978-80-261-1254-9
mrcbU67 Adámek V. 340
mrcbU67 Jonášová A. 340
mrcbU67 Plánička S. 340