Publication detail
Prediction of the Stamped Part Thinning Depending on Its Geometry and Blank Material
ŘIHÁČEK, J. PODANÝ, K. FALTÝNEK, F.
English title
Prediction of the Stamped Part Thinning Depending on Its Geometry and Blank Material
Type
journal article in Scopus
Language
en
Original abstract
The paper deals with a design of new dimple geometry with a view to minimizing its thinning. In this case, three types of blank materials were analyzed, i.e. ferritic steel X2CrCuTi18, austenitic steel X5CrNi18-10 and austenitic steel X5CrNi18-10 with additional heat treatment. Thinning analysis for different dimple geometry and blank material is performed with a numerical simulation using finite element method in ANSYS software. To verify the accuracy of the numerical simulation, a practical stamping of the part with initial design and comparison between resulting thinning values, which is determined by ANSYS software and experimental microscopic measurement, is also performed.
English abstract
The paper deals with a design of new dimple geometry with a view to minimizing its thinning. In this case, three types of blank materials were analyzed, i.e. ferritic steel X2CrCuTi18, austenitic steel X5CrNi18-10 and austenitic steel X5CrNi18-10 with additional heat treatment. Thinning analysis for different dimple geometry and blank material is performed with a numerical simulation using finite element method in ANSYS software. To verify the accuracy of the numerical simulation, a practical stamping of the part with initial design and comparison between resulting thinning values, which is determined by ANSYS software and experimental microscopic measurement, is also performed.
Keywords in English
Numerical Simulation, Forming, Dimple, ANSYS, Finite Element Method
Released
30.04.2019
Publisher
J. E. Purkyne University in Usti n. Labem
Location
Ústí nad Labem
ISSN
1213-2489
Volume
19
Number
2
Pages from–to
314–320
Pages count
7
BIBTEX
@article{BUT156728,
author="Jan {Řiháček} and Kamil {Podaný} and František {Faltýnek},
title="Prediction of the Stamped Part Thinning Depending on Its Geometry and Blank Material",
year="2019",
volume="19",
number="2",
month="April",
pages="314--320",
publisher="J. E. Purkyne University in Usti n. Labem",
address="Ústí nad Labem",
issn="1213-2489"
}