Study on Constitutive Model of Cyclic Elastoplastic Behavior of 6082-T6 Aluminum Alloy

Author:

Wu Mingze1,Fan Shenggang2,Zhou Hang3,Dong Daoyang4,Liu Meijing5,Sun Zekang6

Affiliation:

1. Ph.D. Candidate, Key Laboratory of Concrete and Prestressed Concrete Structures of Ministry of Education, School of Civil Engineering, Southeast Univ., Jiulonghu Campus, Nanjing 211189, China.

2. Professor, Key Laboratory of Concrete and Prestressed Concrete Structures of Ministry of Education, School of Civil Engineering, Southeast Univ., Jiulonghu Campus, Nanjing 211189, China (corresponding author).

3. Ph.D. Candidate, School Civil and Environmental Engineering, Nanyang Technol Univ., Singapore 639798.

4. Master’s Candidate, Key Laboratory of Concrete and Prestressed Concrete Structures of Ministry of Education, School of Civil Engineering, Southeast Univ., Jiulonghu Campus, Nanjing 211189, China.

5. Associate Professor, Dept. of Civil Engineering, Southeast Univ., Chengxian College, Nanjing 210088, China.

6. Master’s Candidate, Dept. of Civil Engineering, Southeast Univ., Chengxian College, Nanjing 210088, China.

Publisher

American Society of Civil Engineers (ASCE)

Reference27 articles.

1. Armstrong, P. J., and C. O. Frederick. 1966. A mathematical representation of the multiaxial bauschinger effect. Berkeley, UK: Central Electricity Generating Board.

2. Load sequence effects and cyclic deformation behaviour of 7075-T651 aluminium alloy

3. Time-independent constitutive theories for cyclic plasticity

4. Chaboche, J. L., K. D. Van, and G. Cordier. 1979. Modelization of the strain memory effect on the cyclic hardening of 316 stainless steel. Raleigh, NC: International Association for Structural Mechanics in Reactor Technology.

5. Constitutive model of structural aluminum alloy under cyclic loading

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