Publication result detail

Numerical modelling of a chevron notched bend specimen – plane model

SOBEK, J.; SEITL, S.; GONZALEZ MENENDEZ, S.

Original Title

Numerical modelling of a chevron notched bend specimen – plane model

English Title

Numerical modelling of a chevron notched bend specimen – plane model

Type

Paper in proceedings (conference paper)

Original Abstract

The paper focuses on a numerical modelling of the initial chevron notch in test specimens subjected to the three-point bending test geometry configuration. The plane model is used with variable thicknesses of the layers with plane stress condition. The number of layers is being investigated and the influence of some input parameters like relative crack length, breadth of initial notch, etc. is evaluated by value of the stress intensity factor for tension loading mode

English abstract

The paper focuses on a numerical modelling of the initial chevron notch in test specimens subjected to the three-point bending test geometry configuration. The plane model is used with variable thicknesses of the layers with plane stress condition. The number of layers is being investigated and the influence of some input parameters like relative crack length, breadth of initial notch, etc. is evaluated by value of the stress intensity factor for tension loading mode

Keywords

Chevron notch, stress intensity factor, three-point bending, fracture test, finite element method

Key words in English

Chevron notch, stress intensity factor, three-point bending, fracture test, finite element method

Authors

SOBEK, J.; SEITL, S.; GONZALEZ MENENDEZ, S.

RIV year

2018

Released

11.09.2017

Book

Fracture and Damage Mechanics, FDM 2017

ISBN

1662-9795

Periodical

Key Engineering Materials (web)

Volume

2017

Number

754

State

Swiss Confederation

Pages from

198

Pages to

201

Pages count

4

BibTex

@inproceedings{BUT143152,
  author="Jakub {Sobek} and Stanislav {Seitl} and Sofia {Gonzalez Menendez}",
  title="Numerical modelling of a chevron notched bend specimen – plane model",
  booktitle="Fracture and Damage Mechanics, FDM 2017",
  year="2017",
  journal="Key Engineering Materials (web)",
  volume="2017",
  number="754",
  pages="198--201",
  doi="10.4028/www.scientific.net/KEM.754.198",
  issn="1662-9795"
}