Identification and validation of a hyperelastic model for self-reinforced polypropylene draping

被引:0
|
作者
Marina Selezneva
Naim Naouar
Yvan Denis
Larissa Gorbatikh
Peter Hine
Stepan V. Lomov
Yentl Swolfs
Ignaas Verpoest
Philippe Boisse
机构
[1] KU Leuven,Department of Materials Engineering
[2] Univ Lyon,School of Physics and Astronomy
[3] INSA-Lyon,undefined
[4] CNRS UMR5259,undefined
[5] LaMCoS,undefined
[6] University of Leeds,undefined
关键词
Self-reinfroced polypropylene; Draping; Simulations; Material properties; Wrinkles;
D O I
暂无
中图分类号
学科分类号
摘要
Self-reinforced polypropylene (SRPP) is a composite in which the reinforcement and the matrix consist of the same polymer, namely polypropylene. The present work focuses on the development and experimental validation of an FE model for thermoforming of SRPP. The constitutive model of SRPP sheet is based on the Boisse – Charmetant hyperelastic law. Material properties required to fit the model were obtained from the tensile and picture frame shear tests performed at forming temperatures and bending test of a non-consolidated fabric at room temperature. The model is validated in comparison with the experimental draping data, with special attention to parameters and patterns of wrinkles. Samples, pre-heated to a surface temperature of 170–175 °C, were deformed up to 1–4 cm heights using a hemispherical mould with a 4.5 cm diameter. Overall, good qualitative correlation between experimental and modelling results is observed, which justifies use of the proposed model with the experimentally identified parameters for prediction of SRPP draping and subsequent analysis of the mechanical response of the consolidated part to loading.
引用
收藏
页码:55 / 65
页数:10
相关论文
共 50 条
  • [1] Identification and validation of a hyperelastic model for self-reinforced polypropylene draping
    Selezneva, Marina
    Naouar, Naim
    Denis, Yvan
    Gorbatikh, Larissa
    Hine, Peter
    Lomov, Stepan V.
    Swolfs, Yentl
    Verpoest, Ignaas
    Boisse, Philippe
    INTERNATIONAL JOURNAL OF MATERIAL FORMING, 2021, 14 (01) : 55 - 65
  • [2] Constitutive Model and Draping Simulations of Self-Reinforced Polypropylene Composites
    Selezneva, Marina
    Naouar, Naim
    Gorbatikh, Larissa
    Hine, Peter
    Lomov, Stepan V.
    Swolfs, Yentl
    Verpoest, Ignaas
    Boisse, Philippe
    PROCEEDINGS OF THE 22ND INTERNATIONAL ESAFORM CONFERENCE ON MATERIAL FORMING (ESAFORM 2019), 2019, 2113
  • [3] On consolidation of self-reinforced polypropylene composites
    Barany, T.
    Izer, A.
    Czigany, T.
    PLASTICS RUBBER AND COMPOSITES, 2006, 35 (09) : 375 - 379
  • [4] Structural morphology of self-reinforced polypropylene
    Huang, Hanxiong
    Cailiao Gongcheng/Journal of Materials Engineering, 1998, (03): : 17 - 19
  • [5] Functional graded self-reinforced polypropylene sheets
    Bledzki, Andrzej K.
    Ries, Angela
    Passmann, Daniel
    POLIMERY, 2011, 56 (05) : 369 - 374
  • [6] Self-reinforced polypropylene/LCP prepregs and laminates
    Liang, YC
    Isayev, AI
    ANTEC'97 - PLASTICS SAVING PLANET EARTH, CONFERENCE PROCEEDINGS, VOLS 1 - 3, 1997, : 2626 - 2630
  • [7] Structural description of self-reinforced polypropylene composites
    Ries, Angela
    JOURNAL OF APPLIED POLYMER SCIENCE, 2021, 138 (41)
  • [8] Self-reinforced polypropylene/LCP prepregs and laminates
    Liang, YC
    Isayev, AI
    POLYMER COMPOSITES, 2002, 23 (05) : 702 - 722
  • [9] Interply hybrid composites with carbon fiber reinforced polypropylene and self-reinforced polypropylene
    Taketa, I.
    Ustarroz, J.
    Gorbatikh, L.
    Lomov, S. V.
    Verpoest, I.
    COMPOSITES PART A-APPLIED SCIENCE AND MANUFACTURING, 2010, 41 (08) : 927 - 932
  • [10] High performance self-reinforced polypropylene composites
    Barany, Tamas
    Izer, Andras
    Czigany, Tibor
    MATERIALS SCIENCE, TESTING AND INFORMATICS III, 2007, 537-538 : 121 - +