Experimental investigation of initial yield surfaces of solid foams and their evolution under subsequent loading

被引:6
|
作者
Felten, M. [1 ]
Diebels, S. [1 ]
Jung, A. [1 ]
机构
[1] Saarland Univ, Appl Mech, Campus A4-2, D-66123 Saarbrucken, Germany
关键词
Yield surface; Open-cell metal foam; Post-yield surface; Composite foam; OPEN-CELL FOAMS; METAL FOAMS; MECHANICAL-PROPERTIES; ALUMINUM FOAMS; ENERGY-ABSORPTION; PLASTICITY THEORY; FAILURE; BEHAVIOR; MICROSTRUCTURE; COMPACTION;
D O I
10.1016/j.msea.2020.139762
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
Metal foams exhibit excellent characteristics suitable for a variety of light weight construction applications, based on outstanding specific mechanical properties and the ability to provide a nearly constant force during energy absorption. All components are subjected to multiaxial stress states during the application. In order to ensure a safe design, yield surfaces constitute the fundamental basis for simulations. The determination of yield surfaces for metal foams is a complex challenge. In the literature yield surfaces have been usually simulated using model assumptions and rarely experimentally validated. The present contribution provides a comprehensive representation of experimentally determined yield surfaces for open-cell nickel/polyurethane (Ni/PU) hybrid metal foams. For the first time in the literature, the effect of different nickel coating thicknesses on the shape of the yield surface is systematically examined. Determining the yield surface parameters as function of the effective foam density allows for a prediction of the minimum layer thickness required for any complex loading condition. Furthermore, the development of the post-yield surfaces under increasing strain is investigated. Post-yield surfaces provide reliable information about the mechanical material behaviour under applied multiaxial stress after a certain pre-damage.
引用
收藏
页数:13
相关论文
共 50 条
  • [21] Experimental and numerical investigation of the evolution of residual stresses under cyclic mechanical loading
    Tom Schneider
    Jens Gibmeier
    Markus Kästner
    Archive of Applied Mechanics, 2025, 95 (5)
  • [22] Experimental investigation on damage evolution behaviour of a granitic rock under loading and unloading
    Dai Bing
    Zhao Guo-yan
    Konietzky, H.
    Wasantha, P. L. P.
    JOURNAL OF CENTRAL SOUTH UNIVERSITY, 2018, 25 (05) : 1213 - 1225
  • [23] Experimental investigation on yield behavior of PMMA under combined shear-compression loading
    Zhang, Jianjun
    Jin, Tao
    Wang, Zhihua
    Zhao, Longmao
    Results in Physics, 2016, 6 : 265 - 269
  • [24] EFFECTIVE INITIAL AND SUBSEQUENT LOADING SURFACES FOR PHASE TRANSFORMATION IN TPMS-SMAS
    Alagha, Ali N.
    Van Viet, Nguyen
    Zaki, Wael
    PROCEEDINGS OF ASME 2021 CONFERENCE ON SMART MATERIALS, ADAPTIVE STRUCTURES AND INTELLIGENT SYSTEMS (SMASIS2021), 2021,
  • [25] Investigation on the compressive properties of auxetic foams under different loading rates
    Nazari, Zahra
    Ahmadi, Hamed
    Liaghat, Gholamhossein
    Vahid, Samireh
    POLYMER ENGINEERING AND SCIENCE, 2022, 62 (05): : 1720 - 1730
  • [26] YIELD SURFACES OF SUS304 UNDER CYCLIC LOADING
    ISHIKAWA, H
    SASAKI, K
    JOURNAL OF ENGINEERING MATERIALS AND TECHNOLOGY-TRANSACTIONS OF THE ASME, 1988, 110 (04): : 364 - 371
  • [27] Experimental investigation on the yield behavior of metal foam under shear-compression combined loading
    LUO Geng
    XUE Pu
    LI YuLong
    Science China(Technological Sciences), 2021, (07) : 1412 - 1422
  • [28] Experimental and theoretical fracture toughness investigation of PUR foams under mixed mode I plus III loading
    Aliha, M. R. M.
    Linul, E.
    Bahmani, A.
    Marsavina, L.
    POLYMER TESTING, 2018, 67 : 75 - 83
  • [29] Experimental investigation on the yield behavior of metal foam under shear-compression combined loading
    LUO Geng
    XUE Pu
    LI YuLong
    Science China(Technological Sciences), 2021, 64 (07) : 1412 - 1422
  • [30] Experimental investigation on the yield behavior of metal foam under shear-compression combined loading
    Geng Luo
    Pu Xue
    YuLong Li
    Science China Technological Sciences, 2021, 64 : 1412 - 1422