Ductile damage measurement and necking analysis of metal sheets based on digital image correlation and direct current potential drop methods

Author:

Zhang Saijun1,Xia Qinxiang1,Li Wenfang2,Zhou Xuhui1

Affiliation:

1. School of Mechanical and Automotive Engineering, South China University of Technology, Guangzhou, China

2. School of Materials Science and Engineering, South China University of Technology, Guangzhou, China

Abstract

In this study, a damage measurement procedure is proposed, which combines both digital image correlation and direct current potential drop techniques to evaluate quantitatively the ductile damage in metal sheets during uniaxial tensile loading. Digital image correlation and direct current potential drop techniques are applied to measure the full-field deformation and overall electrical resistance of the region of interest of the specimen during tensile loading. The basic principles, methodology and derivation process are presented in detail. A professional data processing system based on MATLAB is developed to characterize the deformation–resistance–damage relationship during uniaxial tensile loading. The ductile damage can be evaluated conveniently by the proposed approach, and the experimental results so obtained are consistent with those derived by using micro-hardness technique. The necking stage during uniaxial tension is discussed in detail, and it has been shown that the onsets of diffused necking and localized necking can be determined according to the relationship between the major principle true strain and loading steps. Further, the onset of the localized necking can be used to estimate accurately whether the material is going to rupture.

Publisher

SAGE Publications

Subject

Mechanical Engineering,Mechanics of Materials,General Materials Science,Computational Mechanics

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1. Potential drop application to determine the electrical conductivity of a deformed steel sample;PROCEEDINGS OF INTERNATIONAL CONFERENCE OF YOUNG SCIENTISTS AND STUDENTS “TOPICAL PROBLEMS OF MECHANICAL ENGINEERING” ToPME 2021: Mechanical Engineering Research Institute of the Russian Academy of Sciences (IMASH RAN);2023

2. A Review on CDM-Based Ductile Models and its Application;Transactions of the Indian Institute of Metals;2022-11-10

3. Measurement of Changes in Electrical Resistivity of Flat Samples Under Uniaxial Tension;2022 International Conference on Information, Control, and Communication Technologies (ICCT);2022-10-03

4. The Influence of Creep Induced Grain Boundary Separation on Electrical Non-destructive Evaluation Measurements;Journal of Nondestructive Evaluation;2022-03

5. A new stiffness-sensing test to measure damage evolution in solids;Scientific Reports;2022-01-10

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