A non-iterative parameter identification procedure for the non-local Gurson–Tvergaard–Needleman model based on standardized experiments

Author:

El Khatib OmarORCID,Hütter GeralfORCID,Pham Rinh-Dinh,Seupel AndreasORCID,Kuna Meinhard,Kiefer BjoernORCID

Abstract

AbstractDamage mechanics models exhibit favorable properties such as the intrinsic influence of stress triaxiality on damage evolution and the prediction of crack initiation as well as propagation leading to structural failure. However, their application requires advanced expertise hindering the transfer of these models into industrial practice, especially since the parameter calibration is a key obstacle. In this paper, a simplified procedure is proposed for a non-local extension of the Gurson–Tvergaard–Needleman model (GTN), which is a highly accepted model for ductile failure of metals. The procedure is iteration free and requires experimental input data from only two standardized tests. The parameters are determined using look-up diagrams created on the basis of systematic simulations and made available for different material behavior covering the majority of ductile metals. Benchmark tests for three different steels are conducted to evaluate the robustness of the proposed procedure. The reliability of the GTN model is validated for all investigated materials.

Funder

Brandenburgische TU Cottbus-Senftenberg

Publisher

Springer Science and Business Media LLC

Subject

Mechanics of Materials,Modeling and Simulation,Computational Mechanics

Reference57 articles.

1. Abaqus (2014) Online documentation. Dassault Systemes, 6.14 edn

2. Abendroth M (2005) Identifikation elastoplastischer und schädigungsmechanischer Materialparameter aus dem Small Punch Test. Dissertation, TU Bergakademie Freiberg

3. Abendroth M, Kuna M (2003) Determination of deformation and failure properties of ductile materials by means of the small punch test and neural networks. Comput Mater Sci 28(3–4):633–644

4. ASTM International (2020) ASTM E1820-20, standard test method for measurement of fracture toughness. ASTM International, West Conshohocken

5. Aurich D (1993) Analyse und Weiterentwicklung bruchmechanischer Versagenskonzepte. Forschungsbericht 192, Bundesanstalt für Materialforschung und -prüfung (BAM), open access

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