Publication detail

Numerical study and pilot evaluation of experimental data measured on specimen loaded by bending and wedge splitting forces

SEITL, S. DIEGO LIEDO, R.

Original Title

Numerical study and pilot evaluation of experimental data measured on specimen loaded by bending and wedge splitting forces

Type

journal article in Web of Science

Language

English

Original Abstract

The fracture mechanical properties of silicate based materials are determined from various fracture mechanicals tests, e.g. three- or four-point bending test, wedge splitting test, modified compact tension test etc. For evaluation of the parameters, knowledge about the calibration and compliance functions is required. Therefore, in this paper, the compliance and calibration curves for a novel test geometry based on combination of the wedge splitting test and three-point bending test are introduced. These selected variants exhibit significantly various stress state conditions at the crack tip, or, more generally, in the whole specimen ligament. The calibration and compliance curves are compared and used for evaluation of the data from pilot experimental measurement.

Keywords

Numerical simulation; Stress intensity factor; T-stress; Concrete; Finite element method; Wedge splitting test; Three-point bending test

Authors

SEITL, S.; DIEGO LIEDO, R.

Released

1. 1. 2017

Publisher

Gruppo Italiano Frattura

Location

Itálie

ISBN

1971-8993

Periodical

Frattura ed Integrita Strutturale

Year of study

11

Number

39

State

Republic of Italy

Pages from

100

Pages to

109

Pages count

10

URL

BibTex

@article{BUT164216,
  author="Stanislav {Seitl} and Ruben Francisco {Diego Liedo}",
  title="Numerical study and pilot evaluation of experimental data measured on specimen loaded by bending and wedge splitting forces",
  journal="Frattura ed Integrita Strutturale",
  year="2017",
  volume="11",
  number="39",
  pages="100--109",
  doi="10.3221/IGF-ESIS.39.11",
  issn="1971-8993",
  url="https://www.fracturae.com/index.php/fis/article/view/IGF-ESIS.39.11/1849"
}