Effect of different inorganic filler over isothermal and non-isothermal crystallization of polypropylene homopolymer

被引:23
|
作者
Alejandra Alvarez, Vera [1 ]
Javier Perez, Claudio [1 ]
机构
[1] Natl Univ Mar del Plata UNMdP, Fac Engn, Res Inst Mat Sci & Technol INTEMA, RA-7600 Mar Del Plata, Argentina
关键词
Crystallization; Polypropylene; Modeling; Fillers; Compatibility; ANHYDRIDE GRAFTED POLYPROPYLENE; ISOTACTIC POLYPROPYLENE; MECHANICAL-PROPERTIES; CLAY NANOCOMPOSITES; THERMAL-PROPERTIES; MALEIC-ANHYDRIDE; CARBONATE NANOCOMPOSITES; SILICATE NANOCOMPOSITES; NUCLEATION ACTIVITY; BEHAVIOR;
D O I
10.1007/s10973-011-1705-4
中图分类号
O414.1 [热力学];
学科分类号
摘要
In this study, the effect of several inorganic fillers: silicon oxide (SiO(2)), nanoclay (C20A), alumina (Al(2)O(3)), and calcium carbonate (CaCO(3)) on the crystallization behavior of polypropylene were analyzed for composites with fixed filler content (5 mass%) prepared by intensive mixing following by compression molding. In addition, for calcium carbonate, which produces the highest increase on toughness, PP grafted with maleic anhydride (PP-g-MA) was added to enhance the compatibility. In that case, different content of particles was used (from 5 to 20 mass%) and the synergic effect of both incorporations was demonstrated. For this purpose, isothermal and non-isothermal crystallization tests were carried out in the bulk (by differential scanning calorimetry). In addition, the spherulitic growth was studied (by optical microscopy). Different models were used to predict the relative degree of crystallinity and several parameters were analyzed. All results indicate that whereas alumina and calcium carbonate acted as nucleating agents, silica and nanoclay displayed an opposite behavior. The full models that take into account the different parameters during cooling under isothermal and non-isothermal conditions were used to construct continuous cooling transformation and time temperature transformation diagrams. Both kind of diagrams provide a fundamental tool to understand the crystallization behavior of studied composites and are useful to determine the processing conditions.
引用
收藏
页码:633 / 643
页数:11
相关论文
共 50 条
  • [11] KINETICS OF NON-ISOTHERMAL CRYSTALLIZATION OF POLYETHYLENE AND POLYPROPYLENE
    EDER, M
    WLOCHOWICZ, A
    POLYMER, 1983, 24 (12) : 1593 - 1595
  • [12] Non-isothermal crystallization kinetics and nucleation activity of filler in polypropylene/microcrystalline cellulose composites
    Zhu, Xiu Ling
    Wang, Chao Sheng
    Wang, Biao
    Wang, Hua Ping
    IRANIAN POLYMER JOURNAL, 2008, 17 (04) : 297 - 309
  • [13] ISOTHERMAL AND NON-ISOTHERMAL CRYSTALLIZATION OF POLYETHYLENE
    KAMAL, MR
    CHU, E
    POLYMER ENGINEERING AND SCIENCE, 1983, 23 (01): : 27 - 31
  • [14] Effect of hyperbranched poly(ester amide) on non-isothermal crystallization of polypropylene
    Yan Huizhi
    Chen Yanmo
    Wu Wenhua
    PROCEEDINGS OF 2009 INTERNATIONAL CONFERENCE ON ADVANCED FIBERS AND POLYMER MATERIALS, VOLS 1 AND 2, 2009, : 133 - 136
  • [15] Non-isothermal crystallization kinetics of β-nucleated isotactic polypropylene
    Yuan-Hong Shi
    Qiang Dou
    Journal of Thermal Analysis and Calorimetry, 2013, 112 : 901 - 911
  • [16] Modeling of non-isothermal crystallization kinetics of isotactic polypropylene
    Mubarak, Y
    Harkin-Jones, EMA
    Martin, PJ
    Ahmad, M
    POLYMER, 2001, 42 (07) : 3171 - 3182
  • [17] Study on the Non-isothermal Crystallization Kinetics of Branched Polypropylene
    Yoon, Kyung Hwa
    Shin, Dong Yup
    Kim, Youn Cheol
    POLYMER-KOREA, 2012, 36 (02) : 245 - 250
  • [18] Non-isothermal crystallization of glass fibre reinforced polypropylene
    Devaux, Eric
    Chabert, Bernard
    Polymer communications Guildford, 1990, 31 (10): : 391 - 394
  • [19] Characteristics of non-isothermal crystallization of polypropylene with and without talc
    Albano, C
    Papa, J
    Ichazo, M
    González, J
    Ustariz, C
    MATERIALS RESEARCH INNOVATIONS, 2004, 8 (03) : 142 - 144
  • [20] Prediction of non-isothermal crystallization parameters for isotactic polypropylene
    Qiu, Shangchang
    Zheng, Yuying
    Zeng, Anran
    Guo, Yong
    THERMOCHIMICA ACTA, 2011, 512 (1-2) : 28 - 33