A Revised Abaqus® Procedure for Fracture Path Simulation Based on the Material Effort Criterion

Author:

Gontarz Jakub1,Podgórski Jerzy1ORCID

Affiliation:

1. Department of Civil Engineering and Architecture, Lublin University of Technology, 20-618 Lublin, Poland

Abstract

This paper presents the results of computer simulations of fracture in three laboratory tests: the three-point bending of a notched beam cut from sandstone, the pull-out test of a self-undercutting anchor fixed in sandstone, and the pull-out test of a bar embedded in concrete. Five material failure criteria were used: Rankine, Coulomb–Mohr, Drucker–Prager, Ottosen–Podgórski, and Hoek–Brown. These criteria were implemented in the Abaqus® FEA system to work with the crack propagation modeling method—extended finite element method (X-FEM). All criteria yielded similar force–displacement relationships and similar crack path shapes. The improved procedure gives significantly better, close-to-real crack propagation paths than can be obtained using the standard subroutines built into the Abaqus® system.

Funder

Lublin University of Technology Science Financing Subsidy

Publisher

MDPI AG

Reference25 articles.

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4. Predicting the Circumferential Strains on a Cylindrical Concrete Specimen during a Pull-out Test;Leibovich;Struct. Concr.,2021

5. Extended Concrete Capacity Design Method for Anchors Close to Non-Rectangular Edges;Mellios;Struct. Concr.,2023

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