Please use this identifier to cite or link to this item: http://hdl.handle.net/10397/61043
Title: Prediction and analysis of ductile fracture in sheet metal forming - Part II : Application of the modified Ayada criterion
Authors: Liu, HS
Fu, MW 
Keywords: Ductile fracture
Finite element simulation
Fracture criterion
Metal formability
Sheet metal forming
Issue Date: 2016
Publisher: SAGE Publications
Source: International journal of damage mechanics, 2016, v. 25, no. 2, p. 120-140 How to cite?
Journal: International journal of damage mechanics 
Abstract: Ductile fracture occurs due to micro-void nucleation, growth, and final coalescence into micro-crack. In this paper, a modified Ayada ductile criterion is implemented for prediction and analysis of the ductile fracture in sheet metal forming. To enhance calculation efficiency, an algorithm for efficient calculation of damage value is proposed. The finite element formulations for obtaining the generalized strain distribution and the damage value distribution by using the modified Ayada ductile criterion are presented. Case studies show that the simulation-based predictions with the built-in modified Ayada ductile fracture criterion have a good agreement with the experimental results. Furthermore, the comparison of the predictions by using the Ayada and the modified criteria shows that the latter is more conservative and hence safer for the design of deformed parts, forming processes, and tooling.
URI: http://hdl.handle.net/10397/61043
ISSN: 1056-7895
EISSN: 1530-7921
DOI: 10.1177/1056789514535231
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