Density and Cell Morphology of Rigid Foam PVC-Clay Nanocomposites

被引:15
作者
Abu-Zahra, Nidal H. [1 ]
Alian, Ali M. [1 ]
机构
[1] Univ Wisconsin Milwaukee, Milwaukee, WI 53201 USA
关键词
Foam; Nanoclay; Nanocomposites; Polyvinlyl chloride; PVC; DEGRADATION;
D O I
10.1080/03602550903413813
中图分类号
O63 [高分子化学(高聚物)];
学科分类号
070305 ; 080501 ; 081704 ;
摘要
Rigid PVC foam is becoming increasingly popular in the building materials industry due to recent advances in compound formulations and extrusion technologies. Amongst the most critical physical properties of rigid foams is the foam density. It not only determines the weight of the foam product, but it also controls its mechanical strength, stiffness, dimensional stability, and more importantly its cost. Foam density is usually maintained, through compound formulations and processing conditions, within a narrow range to ensure adequate product performance at a minimum material cost. The objective of this work is to investigate the effect of using different types of nanoclay fillers on the density and cell morphology of rigid PVC foam. Four different types of commercially available nanoclays were used: Natural Calcium Montmorillonite (unmodified), Sodium Montmorillonite modified with a quaternary ammonium salt, Aluminium Magnesium Silicate clay, and Magnesium Lithium Silicate clay. The individual and combined effect of nanoclay concentration and blowing agent content in the polymer melt on the foam density are reported. Optical Microscopy, SEM, XRD, and TEM imaging were used in the analysis of foam cell morphology and the dispersion and exfoliation of nanoclays in the polymer matrix.
引用
收藏
页码:237 / 243
页数:7
相关论文
共 12 条
  • [1] An XPS investigation of thermal degradation and charring on PMMA clay nanocomposites
    Du, JX
    Zhu, J
    Wilkie, CA
    Wang, JQ
    [J]. POLYMER DEGRADATION AND STABILITY, 2002, 77 (03) : 377 - 381
  • [2] Computational prediction of PVC degradation during injection molding in a rectangular channel
    Garcia, JL
    Koelling, KW
    Summers, JW
    [J]. POLYMER ENGINEERING AND SCIENCE, 2004, 44 (07) : 1295 - 1312
  • [3] GUPTA N, 2004, ANTEC, V2, P1320
  • [4] Effect of melt processing conditions on mechanical properties of polyvinylchloride/organoclay nanocomposites
    Kovarova, L
    Kalendova, A
    Simonik, J
    Malac, J
    Weiss, Z
    Gerard, JF
    [J]. PLASTICS RUBBER AND COMPOSITES, 2004, 33 (07) : 287 - 294
  • [5] Polymer/layered silicate nanocomposites by combined intercalative polymerization and melt intercalation:: a masterbatch process
    Lepoittevin, B
    Pantoustier, N
    Devalckenaere, M
    Alexandre, M
    Calberg, C
    Jérôme, R
    Henrist, C
    Rulmont, A
    Dubois, P
    [J]. POLYMER, 2003, 44 (07) : 2033 - 2040
  • [6] PVC/montmorillonite nanocomposites based on a thermally stable, rigid-rod aromatic amine modifier
    Liang, ZM
    Wan, CY
    Zhang, Y
    Wei, P
    Yin, J
    [J]. JOURNAL OF APPLIED POLYMER SCIENCE, 2004, 92 (01) : 567 - 575
  • [7] Matuana L., 1996, J ADV MAT, V74, P199
  • [8] Poly(vinyl chloride)/clay nanocomposites: X-ray diffraction, thermal and rheological behaviour
    Peprnicek, T.
    Duchet, J.
    Kovarova, L.
    Malac, J.
    Gerard, J. F.
    Simonik, J.
    [J]. POLYMER DEGRADATION AND STABILITY, 2006, 91 (08) : 1855 - 1860
  • [9] Preparation, structure, and properties of PVC/montmorillonite nanocomposites
    Pozsgay, A
    Csapó, I
    Százdi, L
    Pukánszky, B
    [J]. MATERIALS RESEARCH INNOVATIONS, 2004, 8 (03) : 138 - 139
  • [10] TIANBIN R, 2006, J POLYM COMPOS, V27, P55