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Isothermal crystallization study and mechanical properties of polypropylene/polystyrene/styrene-ethylenebutadiene- styrene blends

机译:聚丙烯/聚苯乙烯/苯乙烯-乙烯-丁二烯-苯乙烯共混物的等温结晶研究和力学性能

摘要

An understanding of the crystallization process kinetics is important for the selection of processing parameters and product properties control. In this study, the isothermal crystallization of polypropylene/polystyrene/styrene-ethylene-butadienestyrene (PP/PS/SEBS) blends were evaluated using differential scanning calorimetry (DSC). The blends were prepared by using Brabendar twin screw extruder and samples were then injection molded. 10-15 mg samples were quenched from the melt stage to a range of crystallization temperatures (Tc) between 134-138 C. That samples were held at these selected temperatures until the calorimeter response returned to the baseline. Isothermal crystallization data were then analyzed using Avrami kinetics model and Hoffman-Weeks theory. The increase of amorphous PS and SEBS content in system blends led to the decreases in the crystallization rate. The region covered for Avrami exponent, n, was between 1.97 to 3.2 (±0.1), indicating that heterogeneous nucleation of spherulites occurred and the growth of spherulites was between two-dimensional and three-dimensional for primary crystallization process of the blends. Equilibrium melting temperature (Tm°) obtained through Hoffman-Weeks theory was found to decrease with increasing PS and SEBS contents. The presence of amorphous polymer could disrupt the packing of the crystalline component in the blend, resulting in defective, lower melting point crystallites. The mechanical properties determined from tensile, flexural and impact test revealed that loading of SEBS gave a synergistic effect on flexural properties, and higher loading of SEBS produced superior impact properties. The best stiffness– toughness balance was obtained from the blend of PP/PS 90/10 at 5 phr SEBS loading which also gave fastest crystallization. Morphology studies by scanning electron microscope (SEM) showed finer dispersion of PS with the presence of SEBS into PP/PS blends. SEBS confirmed the improvement of blend compatibility
机译:了解结晶过程动力学对于选择加工参数和控制产品性能非常重要。在这项研究中,使用差示扫描量热法(DSC)对聚丙烯/聚苯乙烯/苯乙烯-乙烯-丁二烯苯乙烯(PP / PS / SEBS)共混物的等温结晶进行了评估。使用Brabendar双螺杆挤出机制备共混物,然后将样品注塑。将10-15 mg样品从熔融阶段骤冷至134-138°C的结晶温度(Tc)。将样品保持在这些选定的温度下,直到量热计响应返回基线为止。然后使用Avrami动力学模型和Hoffman-Weeks理论分析了等温结晶数据。系统共混物中无定形PS和SEBS含量的增加导致结晶速率的降低。 Avrami指数n覆盖的区域在1.97至3.2(±0.1)之间,表明在共混物的初晶过程中,球晶发生了异质形核,球晶的生长在二维和三维之间。发现通过Hoffman-Weeks理论获得的平衡熔融温度(Tm°)随着PS和SEBS含量的增加而降低。无定形聚合物的存在会破坏混合物中结晶成分的堆积,从而导致缺陷的低熔点微晶。由拉伸,挠曲和冲击试验确定的机械性能表明,SEBS的载荷对挠曲性能产生协同作用,而更高的SEBS载荷可产生优异的冲击性能。在5 phr SEBS载荷下,PP / PS 90/10的混合物获得了最佳的刚度和韧性平衡,这也使结晶速度最快。扫描电子显微镜(SEM)的形态学研究表明,在SEBS存在下,PS可以更好地分散到PP / PS混合物中。 SEBS确认共混物相容性得到改善

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    Selamat Nur Zalina;

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  • 年度 2015
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