Publication detail

DETERMINATION OF DYNAMIC PROPERTIES OF 3D PRINTED G3SI1 STEEL

SVOBODA, P. JOPEK, M. SVOBODA, O. HARANT, M.

Original Title

DETERMINATION OF DYNAMIC PROPERTIES OF 3D PRINTED G3SI1 STEEL

Type

journal article in Web of Science

Language

English

Original Abstract

Taylor anvil test is one of the dynamic test method used to determine the dependences of strain rate, strain and temperature on flow stress. This method can be used to determine the stress and strain at any point in the specimen at different temperatures and strain rates. The paper deals with the description of the Taylor anvil test experiment for G3Si1 welding wire. The experiment was carried out in the laboratory of high strain rates at the Faculty of Mechanical Engineering of Brno University of Technology. ANSYS Explicit dynamics software was used to simulate the material behaviour during the test. The Johnson-Cook constitutive relation was used to describe the material behaviour. The simulation results were compared with the experiment.

Keywords

Taylor anvil test; high strain rate; 3D printing; Johnson Cook; G3Si1 steel; finite element method

Authors

SVOBODA, P.; JOPEK, M.; SVOBODA, O.; HARANT, M.

Released

1. 3. 2024

Publisher

MM publishing Ltd.

Location

Praha

ISBN

1803-1269

Periodical

MM Science Journal

Year of study

17

Number

2

State

Czech Republic

Pages from

7230

Pages to

7233

Pages count

4

URL

BibTex

@article{BUT188735,
  author="Petr {Svoboda} and Miroslav {Jopek} and Ondřej {Svoboda} and Martin {Harant}",
  title="DETERMINATION OF DYNAMIC PROPERTIES OF 3D PRINTED G3SI1 STEEL",
  journal="MM Science Journal",
  year="2024",
  volume="17",
  number="2",
  pages="7230--7233",
  doi="10.17973/MMSJ.2024\{_}03\{_}2021183",
  issn="1803-1269",
  url="https://www.mmscience.eu/journal/issues/march-2024/articles/determination-of-dynamic-properties-of-3d-printed-g3si1-steel"
}