Experimental and Numerical Study of Compressive Deformation Behavior of Closed-Cell Aluminum Foam

被引:13
|
作者
Verma, K. S. [1 ,2 ]
Muchhala, D. [1 ,2 ]
Panthi, S. [1 ,2 ]
Mondal, D. P. [1 ,2 ]
机构
[1] CSIR AMPRI, Acad Sci & Innovat Res, Bhopal, India
[2] CSIR Adv Mat Proc & Res Inst Bhopal, Bhopal, India
关键词
aluminum foam; FEM; plateau stress; energy absorption; empirical relation; METALS;
D O I
10.1007/s11223-020-00197-4
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
In the present study, closed-cell aluminum foams of varying porosities (65-75%) were produced through the stir casting technique using TiH2(1 wt.%) as a foaming agent. Under the uniaxial compressive loading, the compressive stress-strain responses of these foams were examined. The finite element (FE) models of the foam were elaborated using the ABAQUS FE simulation software and realized via the ABAQUS Explicit solver. Within the test domain, the experimental results were compared with the FE-predicted ones for the same porosities and both yielded similar stress-strain responses. The energy absorption capacity, yield stress, and densification strain values of AFs obtained through FE simulation were in good agreement with the experimental results, while the predicted plateau stress values differed from the latter by no more than 4-5%.
引用
收藏
页码:451 / 457
页数:7
相关论文
共 50 条
  • [31] Cell-structure and mechanical properties of closed-cell aluminum foam
    周芸
    左孝青
    孙加林
    S.R.Nutt
    TransactionsofNonferrousMetalsSocietyofChina, 2004, (02) : 340 - 344
  • [32] The strain rate and density dependence of the mechanical properties of closed-cell aluminum foam
    Saleem, Farrukh
    Li, Shan
    Cui, Shitang
    Liu, Xujiao
    Xu, Tianyu
    Mei, Lin
    Bian, Yi
    Miao, Chunguang
    Luo, Tianzhi
    MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING, 2023, 884
  • [33] Compressive Deformation Behavior of Highly Porous AA2014-Cenosphere Closed Cell Hybrid Foam Prepared Using CaH2 as Foaming Agent: Comparison with Aluminum Foam and Syntactic Foam
    Birla, Shyam
    Mondal, D. P.
    Das, S.
    Prasanth, N.
    Jha, A. K.
    Venkat, A. N. Ch.
    TRANSACTIONS OF THE INDIAN INSTITUTE OF METALS, 2017, 70 (07) : 1827 - 1840
  • [34] The temperature and anisotropy effect on compressive behavior of cylindrical closed-cell aluminum-alloy foams
    Linul, Emanoil
    Movahedi, Nima
    Marsavina, Liviu
    JOURNAL OF ALLOYS AND COMPOUNDS, 2018, 740 : 1172 - 1179
  • [35] Strain-rate effects on the compressive response of closed-cell copper-coated carbon fiber/aluminum composite foam
    Mu, Yonghang
    Yao, Guangchun
    Cao, Zhuokun
    Luo, Hongjie
    Zu, Guoyin
    SCRIPTA MATERIALIA, 2011, 64 (01) : 61 - 64
  • [36] Compressive Deformation Behavior of Highly Porous AA2014-Cenosphere Closed Cell Hybrid Foam Prepared Using CaH2 as Foaming Agent: Comparison with Aluminum Foam and Syntactic Foam
    Shyam Birla
    D. P. Mondal
    S. Das
    N. Prasanth
    A. K. Jha
    A. N. Ch. Venkat
    Transactions of the Indian Institute of Metals, 2017, 70 : 1827 - 1840
  • [37] Simulation and modeling of different cell shapes for closed-cell LM-13 alloy foam for compressive behavior
    Verma, Karan Singh
    Panthi, Sanjay
    Mondal, Dehi Pada
    INTERNATIONAL JOURNAL OF NONLINEAR SCIENCES AND NUMERICAL SIMULATION, 2023, 24 (06) : 2293 - 2305
  • [38] Compressive deformation behavior of closed cell LM-13 aluminum alloy foam using finite element analysis
    Verma, Karan Singh
    Panthi, Sanjay Kumar
    Mondal, D. P.
    MATERIALS TODAY-PROCEEDINGS, 2020, 28 : 1073 - 1077
  • [39] Microstructural and Compressive Deformation Behavior of Aluminum-Foam-Filled Sections
    Patel, Surendra Kumar
    Singh, Virendra Pratap
    Yadav, Sanjeev Kumar
    kuriachen, Basil
    Nateriya, Raman
    SOFT MATERIALS, 2019, 17 (01) : 14 - 23
  • [40] THE INFLUENCE OF CELL SHAPE ANISOTROPY ON THE COMPRESSIVE PROPERTY OF CLOSED-CELL AL-SI ALLOY FOAM
    Mu, Yongliang
    Yao, Guangchun
    TMS 2010 139TH ANNUAL MEETING & EXHIBITION - SUPPLEMENTAL PROCEEDINGS, VOL 2: MATERIALS CHARACTERIZATION, COMPUTATION AND MODELING AND ENERGY, 2010, : 253 - 258