Prediction of ductile crack growth resistance using mechanical properties of material
Author:
Affiliation:
1. Technology & Intelligence Integration, IHI Corporation
2. Graduate School of Engineering, Osaka University
Publisher
Japan Welding Society
Subject
Metals and Alloys,Surfaces, Coatings and Films,Mechanical Engineering,Mechanics of Materials
Link
https://www.jstage.jst.go.jp/article/qjjws/38/2/38_85/_pdf
Reference14 articles.
1. 2) V. Tvergaard: Influence of Voids on Shear and Instabilities under Plane Strain Conditions, International Journal of Fracture, 17 (1981), 389-407.
2. 3) V. Tvergaard: On Localization in Ductile Materials Containing Spherical Voids, International Journal of Fracture, 18 (1982), 237-252.
3. 4) V. Tvergaard and A. Needleman: Analysis of the Cup-cone Fracture in a Round Tensile Bar, Acta Metallurgica, 32 (1984), 157-169.
4. 5) C. S. Oh, N. H. Kim, Y. J. Kim, J. H. Baek, Y. P. Kim and W. S. Kim: A Finite Element Ductile Failure Simulation Method Using Stress-modified Fracture Strain Model, Engineering Fracture Mechanics, 78 (2011), 124-137.
5. 7) M. Ohata, T. Fukahori and F. Minami: Damage Model for Predicting the Effect of Steel Properties on Ductile Crack Growth Resistance, International Journal of Damage Mechanics, 19 (2010), 441-459.
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1. Ductile fracture modeling of metallic materials: a short review;Frattura ed Integrità Strutturale;2021-12-22
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