JOURNAL ARTICLE

Damage Model for Simulating the Effect of Material Properties on Ductile Crack Growth Resistance-Simulation of Ductile Crack Growth-

Takuya FukahoriMitsuru OhataFumiyoshi MinamiYoichi KayamoriTakehiro Inoue

Year: 2008 Journal:   Tetsu-to-Hagane Vol: 94 (6)Pages: 222-230   Publisher: The Iron and Steel Institute of Japan

Abstract

This study develops a damage model for characterizing the ductile crack growth on the bases of observation of micro-void nucleation for recent structural steels.The resistance to ductile crack initiation is controlled by a local strain at the tip of a notch or a fatigue pre-crack of a specimen. On the other hand, ductile crack extension is controlled by a stress triaxiality dependent critical strain for ductile failure obtained by tension tests of circumferentially notched round-bar specimens. In steels used, the main process for ductile failure is nucleation of micro-voids, whose size is in the order of 1 μm, that are generated at the final stage of ductile failure. According to these observations, a damage model is proposed for simulating the ductile crack extension.This model enables the prediction of the crack growth resistance in terms of CTOD for fatigue pre-cracked specimens with two different crack depth ratios a0/W, where a0 is the initial crack length and W is the specimen width.

Keywords:
Materials science Crack closure Crack growth resistance curve Nucleation Crack tip opening displacement Void (composites) Tension (geology) Composite material Paris' law Structural engineering Fracture mechanics Metallurgy Ultimate tensile strength

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Cited By
0.00
FWCI (Field Weighted Citation Impact)
22
Refs
0.17
Citation Normalized Percentile
Is in top 1%
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Citation History

Topics

Metal Forming Simulation Techniques
Physical Sciences →  Engineering →  Mechanical Engineering
Metallurgy and Material Forming
Physical Sciences →  Engineering →  Mechanics of Materials
Fatigue and fracture mechanics
Physical Sciences →  Engineering →  Mechanics of Materials

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