Detail publikace
Simulation of Fatigue Crack Propagation in the Wing Main Spar Flange
AUGUSTIN, P.
Anglický název
Simulation of Fatigue Crack Propagation in the Wing Main Spar Flange
Typ
článek ve sborníku ve WoS nebo Scopus
Jazyk
en
Originální abstrakt
Simulation of fatigue crack growth in the bottom flange of twin turboprop commuter aircraft wing spar is described in this paper. Analysed crack propagation scenario represents real wing full-scale fatigue test failure. Computational model of bottom flange was prepared using three-dimensional fracture mechanics software FRANC3D. Calculation of crack growth under the variable amplitude loading was performed in AFGROW code using the NASGRO equation and Wheeler retardation model. It was verified with the results of wing spar specimen fatigue test and fractograpic analysis of fatigue fracture from this experiment. Computational model was applied in the prognostic algorithm of structure health monitoring system.
Anglický abstrakt
Simulation of fatigue crack growth in the bottom flange of twin turboprop commuter aircraft wing spar is described in this paper. Analysed crack propagation scenario represents real wing full-scale fatigue test failure. Computational model of bottom flange was prepared using three-dimensional fracture mechanics software FRANC3D. Calculation of crack growth under the variable amplitude loading was performed in AFGROW code using the NASGRO equation and Wheeler retardation model. It was verified with the results of wing spar specimen fatigue test and fractograpic analysis of fatigue fracture from this experiment. Computational model was applied in the prognostic algorithm of structure health monitoring system.
Klíčová slova anglicky
fatigue crack growth, wing spar, fatigue test, BEM, SHM
Vydáno
03.12.2018
ISBN
978-80-214-5696-9
Kniha
13th Research and Education in Aircraft Design Conference
Strany od–do
66–75
Počet stran
10
BIBTEX
@inproceedings{BUT151330,
author="Petr {Augustin},
title="Simulation of Fatigue Crack Propagation in the Wing Main Spar Flange ",
booktitle="13th Research and Education in Aircraft Design Conference",
year="2018",
month="December",
pages="66--75",
isbn="978-80-214-5696-9"
}