Two-Intervals Hardening Function in a Phase-Field Damage Model for the Simulation of Aluminum Alloy Ductile Behavior

被引:3
|
作者
Dunic, Vladimir [1 ]
Zivkovic, Jelena [1 ]
Milovanovic, Vladimir [1 ]
Pavlovic, Ana [2 ]
Radovanovic, Andreja [3 ]
Zivkovic, Miroslav [1 ]
机构
[1] Univ Kragujevac, Fac Engn, Kragujevac 34000, Serbia
[2] Univ Bologna, Dept Ind Engn, I-40136 Bologna, Italy
[3] IMW Inst, Mech & Met Lab, Kragujevac 34325, Serbia
关键词
aluminum alloys; two-intervals hardening function; von Mises plasticity; phase-field damage modeling; ductile fracture; FINITE STRAINS; FRACTURE; FORMULATION; PLASTICITY; SURFACE;
D O I
10.3390/met11111685
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
The aluminum alloys (AA) are among the most utilized materials in engineering structures, which induces the need for careful investigation, testing, and possibilities for accurate simulation of the structure's response. AA 5083-H111 specimens were used to investigate the possibility of employing a Phase-Field Damage Model (PFDM) for the simulation of AA structures' behavior. The specimens were mechanically tested by uniaxial tensile loading tests. Based on the obtained results, the PFDM was employed with a von Mises plasticity model, implemented in the Finite Element Method software. The plasticity model was extended by modification of the hardening function defined in two-intervals: a linear hardening and a Simo-type hardening. An excellent superposition of the simulation and experimental force-displacement response was recorded. These findings suggest that the AA structures' response can be successfully simulated in the elastic-plastic domain, as well as its failure by damage being controlled.
引用
收藏
页数:17
相关论文
共 50 条
  • [31] Microscopic phase-field simulation for substitution behavior of Cr atom in Ni75CrxAl25-x alloy
    Chu, Zhong
    Wang, Jin
    Chen, Zheng
    Xiyou Jinshu Cailiao Yu Gongcheng/Rare Metal Materials and Engineering, 2011, 40 (02): : 259 - 264
  • [32] Microscopic Phase-Field Simulation for Substitution Behavior of Cr Atom in Ni75CrxAl25-x Alloy
    Zhong, Chu
    Jin, Wang
    Zheng, Chen
    RARE METAL MATERIALS AND ENGINEERING, 2011, 40 (02) : 259 - 264
  • [33] Simulation of Cyclic Deformation Behavior of Selective Laser Melted and Hybrid-Manufactured Aluminum Alloys Using the Phase-Field Method
    Siddique, Shafaqat
    Awd, Mustafa
    Wiegold, Tillmann
    Klinge, Sandra
    Walther, Frank
    APPLIED SCIENCES-BASEL, 2018, 8 (10):
  • [34] Numerical Simulation for Grain Refinement of Aluminum Alloy by Multi-phase-field Model Coupled with CALPHAD
    Nomoto, Sukeharu
    Minamoto, Satoshi
    Nakajima, Keiji
    ISIJ INTERNATIONAL, 2009, 49 (07) : 1019 - 1023
  • [35] Reply to "Comment on simulation of damage evolution in composites: A phase-field model, by H. Emmerich and D. Pilipenko"
    Biner, S. B.
    Hu, S. Y.
    SCRIPTA MATERIALIA, 2012, 66 (02) : 128 - 128
  • [36] An adaptive, fully implicit multigrid phase-field model for the quantitative simulation of non-isothermal binary alloy solidification
    Rosam, J.
    Jimack, P. K.
    Mullis, A. M.
    ACTA MATERIALIA, 2008, 56 (17) : 4559 - 4569
  • [37] Phase-field model-based simulation of two-phase fluid motion on partially wetted and textured solid surface
    Takada, Naoki
    Matsumoto, Junichi
    Matsumoto, Sohei
    Kurihara, Kazuma
    JOURNAL OF COMPUTATIONAL SCIENCE, 2016, 17 : 315 - 324
  • [38] A phase-field model for creep behavior in nickel-base single-crystal superalloy: Coupled with creep damage
    Yang, Min
    Zhang, Jun
    Wei, Hua
    Gui, Weimin
    Su, Haijun
    Jin, Tao
    Liu, Lin
    SCRIPTA MATERIALIA, 2018, 147 : 16 - 20
  • [39] Simulation Analysis of Two-Phase Flow Field in Robotic Sand Blasting with Aluminum Alloy Car Body
    Xu, Zihan
    Cui, Ze
    Huang, Guangcai
    Zhou, Wenjing
    2024 4TH INTERNATIONAL CONFERENCE ON COMPUTER, CONTROL AND ROBOTICS, ICCCR 2024, 2024, : 310 - 314
  • [40] Variational formulation and numerical accuracy of a quantitative phase-field model for binary alloy solidification with two-sided diffusion
    Ohno, Munekazu
    Takaki, Tomohiro
    Shibuta, Yasushi
    PHYSICAL REVIEW E, 2016, 93 (01)