High density polyethylene (HDPE): Experiments and modeling

被引:39
|
作者
Dusunceli, Necmi [1 ]
Colak, Ozgen U. [1 ]
机构
[1] Yildiz Tech Univ, Dept Mech Engn, TR-34349 Istanbul, Turkey
关键词
HDPE; VBO; creep; relaxation; rate dependency; modeling;
D O I
10.1007/s11043-007-9026-5
中图分类号
O3 [力学];
学科分类号
08 ; 0801 ;
摘要
The uniaxial tension (loading and unloading), creep and relaxation experiments on high density polyethylene (HDPE) have been carried out at room temperature. The stress-strain behavior of HDPE under different strain rates, creep (relaxation) behavior at different stress (strain) levels have been investigated. These experimental results are used to compare the simulation results of a unified state variable theory, viscoplasticity theory based on overstress (VBO) and a macro-mechanical constitutive model for elasto-viscoplastic deformation of polymeric materials developed by Boyce et al. (Polymer 41:2183-2201, 2000). It is observed that elasto-viscoplasticity model by Boyce et al. (Polymer 41:2183-2201, 2000) is not good enough to simulate stress-strain, creep and relaxation behaviors of HDPE. However, the aforementioned behaviors can be modeled quantitatively by using VBO model.
引用
收藏
页码:331 / 345
页数:15
相关论文
共 50 条
  • [31] Steady-state and dynamic modeling of commercial slurry high-density polyethylene (HDPE) processes
    Khare, NP
    Seavey, KC
    Liu, YA
    Ramanathan, S
    Lingard, S
    Chen, CC
    INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH, 2002, 41 (23) : 5601 - 5618
  • [32] Recovery of plastic low-density polyethylene/high-density polyethylene (LDPE/HDPE) wastes
    Albano, C
    Sánchez, G
    Ismayel, A
    Hernández, P
    INTERNATIONAL JOURNAL OF POLYMER ANALYSIS AND CHARACTERIZATION, 1999, 5 (02) : 109 - 126
  • [33] External pressure induced buckling collapse of high density polyethylene (HDPE) liners: FEM modeling and predictions
    Rueda, F.
    Torres, J. P.
    Machado, M.
    Frontini, P. M.
    Otegui, J. L.
    THIN-WALLED STRUCTURES, 2015, 96 : 56 - 63
  • [35] Nonlinear viscoelastic contribution to the cyclic accommodation of high density polyethylene in tension: Experiments and modeling
    Song Thanh Thao Nguyen
    Castagnet, Sylvie
    Grandidier, Jean-Claude
    INTERNATIONAL JOURNAL OF FATIGUE, 2013, 55 : 166 - 177
  • [36] Space charge distribution and crystalline structure in low density polyethylene (LDPE) blended with high density polyethylene (HDPE)
    Lin, YJ
    Du, WC
    Tu, DM
    Zhong, W
    Du, QG
    POLYMER INTERNATIONAL, 2005, 54 (02) : 465 - 470
  • [37] Study of high density polyethylene (HDPE) pyrolysis with reactive molecular dynamics
    Liu, Xiaolong
    Li, Xiaoxia
    Liu, Jian
    Wang, Ze
    Kong, Bin
    Gong, Xiaomin
    Yang, Xiaozhen
    Lin, Weigang
    Guo, Li
    POLYMER DEGRADATION AND STABILITY, 2014, 104 : 62 - 70
  • [38] Synthesis of Manganese Stearate for High Density Polyethylene (HDPE) and Its Biodegradation
    Aras, Neny Rasnyanti M.
    Arcana, I. Made
    5TH INTERNATIONAL CONFERENCE ON MATHEMATICS AND NATURAL SCIENCES (ICMNS 2014), 2015, 1677
  • [39] On the crystallization of syndiotactic polypropylene (sPP)/high density polyethylene (HDPE) blends
    M. Bonnet
    J. Loos
    J. Petermann
    Colloid and Polymer Science, 1998, 276 : 524 - 528
  • [40] Compression Creep and Thermal Ratcheting Behavior of High Density Polyethylene (HDPE)
    Jeya, Rahul Palaniappan Kanthabhabha
    Bouzid, Abdel-Hakim
    POLYMERS, 2018, 10 (02)