Thermal and dielectric behavior of polyamide-6/clay nanocomposites

被引:15
|
作者
Hammami, Imen [1 ]
Hammami, Helmi [1 ]
Soulestin, Jeremie [2 ]
Arous, Mourad [1 ]
Kallel, Ali [1 ]
机构
[1] Univ Sfax, Dept Phys, Fac Sci Sfax, LaMaCoP, Sfax 3018, Tunisia
[2] Univ Lille, Dept Polymers & Composites Technol & Mech Engn, IMT Lille Douai, TPCIM, F-59500 Douai, France
关键词
Polymer; Composite; Interface; DIFFERENTIAL SCANNING CALORIMETRY; REVERSIBLE CRYSTALLIZATION; WATER-ABSORPTION; RELAXATION; DYNAMICS; SPECTROSCOPY; VISCOSITY; NYLON-6; LIQUID; PHASE;
D O I
10.1016/j.matchemphys.2019.04.048
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
In this work, the influence of the incorporation of nanoparticles (organo-modified montmorillonite Cloisite 30B) in polyamide 6 (PA6) on rigid amorphous fraction (RAF) formation had been explored employing Differential Scanning Calorimetry (DSC), Flash Differential Scanning Calorimetry (Flash DSC) and Broadband Dielectric Spectroscopy (BDS) techniques. The existence of a RAF in PA6-montmorillonite nanocomposite films is available from specific heat capacity measurement at the glass transition region of the nanocomposites. It was shown that at high C3OB content, this fraction becomes larger. Using Flash DSC, it was possible not only to measure the heat capacity step at the glass transition of the materials, but also to provide quantitative knowledge on the kinetics of crystallization and nucleation of PA6-based nanocomposites. The dielectric relaxation spectroscopy measurement was investigated, in the frequency range 0.1-10(6) Hz and varying temperature from 20 to 200 degrees C, which highlight different relaxation phenomena: the alpha dipolar relaxation, the alpha c relaxation and Max-well-Wagner-Sillars (MWS) interfacial polarizations. As C30B content increases, a MWS relaxation emerges in the nanocomposites, thus revealing the increase of RAF in the nanocomposite with high C30B content.
引用
收藏
页码:99 / 108
页数:10
相关论文
共 50 条
  • [31] Investigation on the Rheological Behavior of Polyamide-6/Montmorillonite Nanocomposites by Reactive Extrusion
    Zhao, Ming
    Lu, Xiaozhong
    Gu, Kai
    Sun, Xiaomin
    Ji, Changqing
    FUNDAMENTAL OF CHEMICAL ENGINEERING, PTS 1-3, 2011, 233-235 : 1998 - 2001
  • [32] Mechanical and thermal behavior of polyamide-6/clay nanocomposite using continuum-based micromechanical modeling
    Jong-Il Weon
    Macromolecular Research, 2009, 17 : 797 - 806
  • [33] Mechanical and Thermal Behavior of Polyamide-6/Clay Nanocomposite Using Continuum-based Micromechanical Modeling
    Weon, Jong-Il
    MACROMOLECULAR RESEARCH, 2009, 17 (10) : 797 - 806
  • [34] ON THE THERMAL MOBILITY OF THE AMINO END GROUPS OF POLYAMIDE-6 AND POLYAMIDE-6,6
    SCHMITZ, FP
    MROSZEWSKI, KD
    ROSSBACH, V
    MAKROMOLEKULARE CHEMIE-MACROMOLECULAR CHEMISTRY AND PHYSICS, 1983, 184 (06): : 1255 - 1263
  • [35] Rheological behavior of polyamide-6 based nanocomposites:: Experimental study and modeling
    Sepehr, M.
    Kabanemi, K. K.
    Hetu, J. F.
    XVTH INTERNATIONAL CONGRESS ON RHEOLOGY - THE SOCIETY OF RHEOLOGY 80TH ANNUAL MEETING, PTS 1 AND 2, 2008, 1027 : 755 - 757
  • [36] Equations of State for Polyamide-6 and Its Nanocomposites. II. Effects of Clay
    Utracki, L. A.
    JOURNAL OF POLYMER SCIENCE PART B-POLYMER PHYSICS, 2009, 47 (10) : 966 - 980
  • [37] Infrared spectroscopy studies of structure and orientation in clay-reinforced polyamide-6 nanocomposites
    Cole, KC
    Denault, J
    Bureau, MN
    MACROMOLECULAR SYMPOSIA, 2004, 205 : 47 - 60
  • [38] The β-crystalline form of isotactic polypropylene in blends of isotactic polypropylene and polyamide-6/clay nanocomposites
    Feng, M
    Gong, FL
    Zhao, CG
    Chen, GM
    Zhang, SM
    Yang, MS
    Han, CC
    JOURNAL OF POLYMER SCIENCE PART B-POLYMER PHYSICS, 2004, 42 (18) : 3428 - 3438
  • [39] Crystallisation behaviour of Polyamide-6 and Polyamide-66 nanocomposites
    Hedicke, K
    Wittich, H
    Mehler, C
    Gruber, F
    Altstädt, V
    COMPOSITES SCIENCE AND TECHNOLOGY, 2006, 66 (3-4) : 571 - 575
  • [40] Glass fiber reinforced polyamide-6 nanocomposites
    Akkapeddi, MK
    POLYMER COMPOSITES, 2000, 21 (04) : 576 - 585