PREDICTION OF STRESS-STRAIN RELATIONSHIPS IN POLYMER COMPOSITES

被引:26
|
作者
CHOW, TS
机构
[1] Xerox Webster Research Center, Webster, NY 14580, 800 Phillips Road
关键词
FILLED POLYMERS; YOUNG MODULUS; YIELD BEHAVIOR; STRESS STRAIN CURVE; RELAXATION TIME; ACTIVATION VOLUME;
D O I
10.1016/0032-3861(91)90557-Y
中图分类号
O63 [高分子化学(高聚物)];
学科分类号
070305 ; 080501 ; 081704 ;
摘要
A unified theory is developed to predict the elastic moduli, yield stress, and stress-strain curve of polymer composites. In addition to the elastic moduli of filler and matrix, two more constants, related to the hole and activation volume, are needed as input parameters to describe the nonequilibrium mechanical properties of composites. This paper is a generalization of our earlier composite theory to incorporate the effect of structural relaxation. We have derived the compositional dependent relaxation time, and have applied it to understand the deformation kinetics, and to determine the compressive stress-strain behaviour as a function of the filler concentration, strain rate, and temperature. The type of stress applied to a system plays an important role in nonlinear deformations. We shall discuss uniaxial compression, which is not sensitive to cracks, and gives the characteristics of the pure material. As the volume fraction of filler increases, both the effective elastic modules and yield stress increases. However, the system becomes more brittle at the same time.
引用
收藏
页码:29 / 33
页数:5
相关论文
共 50 条
  • [1] Investigation stress-strain behaviors of Glass/Polymer composites
    Ye, Junjie
    Li, Dapeng
    Han, Xiaohui
    Chen, Baojia
    ADVANCED TECHNOLOGIES IN MANUFACTURING, ENGINEERING AND MATERIALS, PTS 1-3, 2013, 774-776 : 775 - +
  • [2] ANALYSIS OF STRESS-STRAIN CURVES OF FILLED POLYMER COMPOSITES
    VOLODIN, VP
    ZAKHAROV, SK
    KENUNEN, IV
    POMERANTSEV, VI
    STROGANOVA, SD
    MECHANICS OF COMPOSITE MATERIALS, 1992, 28 (04) : 304 - 309
  • [3] PREDICTION OF STRESS-STRAIN RELATIONSHIPS IN GLASSY AND CRYSTALLINE POLYMERS
    MATSUOKA, S
    POLYMER JOURNAL, 1985, 17 (01) : 321 - 335
  • [4] Finite element prediction of stress-strain fields on sandwich composites
    Martins, R.
    Reis, L.
    Marat-Mendes, R.
    XV PORTUGUESE CONFERENCE ON FRACTURE, PCF 2016, 2016, 1 : 66 - 73
  • [5] STRESS-STRAIN RELATIONSHIPS IN HAIR
    SILVIDI, AA
    BULLETIN OF THE AMERICAN PHYSICAL SOCIETY, 1973, 18 (07): : 889 - 889
  • [6] Effective Stress-Strain, Thermophysical and Electrophysical Properties of Filled Polymer Composites
    Bochkareva, S. A.
    Grishaeva, N. Yu.
    Lyukshin, B. A.
    Lyukshin, P. A.
    Matolygina, N. Yu.
    Panin, S. V.
    MECHANICS, RESOURCE AND DIAGNOSTICS OF MATERIALS AND STRUCTURES (MRDMS-2018), 2018, 2053
  • [7] Prediction of the tensile stress-strain curve and ductility in Al/SiC composites
    Gonzalez, C
    Llorca, J
    SCRIPTA MATERIALIA, 1996, 35 (01) : 91 - 97
  • [8] Prediction of stress-strain curves for TCP/PLLA composites: effect of hydrolysis and strain rate
    Kobayashi, Satoshi
    Yamaji, Shusaku
    ADVANCED COMPOSITE MATERIALS, 2015, 24 : 125 - 136
  • [9] BIAXIAL STRESS-STRAIN RELATIONSHIPS FOR CONCRETE
    TASUJI, ME
    NILSON, AH
    SLATE, FO
    MAGAZINE OF CONCRETE RESEARCH, 1979, 31 (109) : 217 - 224
  • [10] INSITU AND LABORATORY STRESS-STRAIN RELATIONSHIPS
    KABBAJ, M
    TAVENAS, F
    LEROUEIL, S
    GEOTECHNIQUE, 1988, 38 (01): : 83 - 100