首页> 外文会议>International symposium on polymer physics : Preprints >TIME EVOLUTION OF PHASE STRUCTURE AND CORRESPONDING MECHANICAL PROPERTIES OF IPP/PEOC BLENDS IN THE LATE-STAGE PHASE SEPARATION
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TIME EVOLUTION OF PHASE STRUCTURE AND CORRESPONDING MECHANICAL PROPERTIES OF IPP/PEOC BLENDS IN THE LATE-STAGE PHASE SEPARATION

机译:后期相分离过程中相结构的时间演化及IPP / PEOC共混物的相应力学性能

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摘要

@@A typical toughened polymeric alloy system, isotactic polypropylene/poly(ethylene-co-octane) (iPP/PEOc) blend, was selected in this study to investigate the influence of phase separation on the final mechanical properties of the polyolefin blend. The time dependence of the morphology evolution of this iPP/PEOc blend with different compositions were annealed at 200℃ and investigated with scanning electron microscopy (SEM) and phase contrast optical microscope (PCOM). It was found that, under the phase separation temperature, the domain size of iPP80/PEOc20 (PEOc-20) increases only slightly, while the structure evolution of iPP60/PEOc40 (PEOc-40) is quite prominently (Fig. 1). The tensile tests revealed that the mechanical properties of PEOc-20, including break strength and elongation at break decrease only a very small amount, while those of PEOc-40 are depressed obviously with phase separation time (Fig. 1). The decrease of interphase and a sharper boundary resulting from domain coarsening during the late stage phase separation are responsible for the poor tensile properties (Fig. 2). It is believed that the composition, the annealing time and the processing temperatures all contribute to the morphology evolution and the consequent mechanical properties of iPP/PEOc blends.
机译:在本研究中,选择了典型的增韧聚合物合金体系,即全同立构聚丙烯/聚乙烯(辛醇-辛烷)共混物(iPP / PEOc),以研究相分离对聚烯烃共混物最终机械性能的影响。在200℃下对这种不同组成的iPP / PEOc共混物的形貌演化的时间依赖性进行退火,并用扫描电子显微镜(SEM)和相差光学显微镜(PCOM)进行了研究。结果发现,在相分离温度下,iPP80 / PEOc20(PEOc-20)的畴尺寸仅略有增加,而iPP60 / PEOc40(PEOc-40)的结构演变非常明显(图1)。拉伸试验表明,PEOc-20的机械性能(包括断裂强度和断裂伸长率)仅下降很小,而PEOc-40的机械性能却随着相分离时间而明显降低(图1)。相分离的减少和后期相分离过程中畴粗化导致的边界更加尖锐,这是不良的拉伸性能的原因(图2)。据认为,组成,退火时间和加工温度均对iPP / PEOc共混物的形态演变和随之而来的机械性能做出了贡献。

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  • 会议地点 Xiamen(CN);Xiamen(CN)
  • 作者单位

    Beijing National Laboratory for Molecular Sciences,CAS Key Laboratory of Engineering Plastics / State Key Laboratory of Polymer Physics and Chemistry,Joint Laboratory of Polymer Science and Materials,Institute of Chemistry,Chinese Academy of Sciences,Beij;

    Beijing National Laboratory for Molecular Sciences,CAS Key Laboratory of Engineering Plastics / State Key Laboratory of Polymer Physics and Chemistry,Joint Laboratory of Polymer Science and Materials,Institute of Chemistry,Chinese Academy of Sciences,Beij;

    Beijing National Laboratory for Molecular Sciences,CAS Key Laboratory of Engineering Plastics / State Key Laboratory of Polymer Physics and Chemistry,Joint Laboratory of Polymer Science and Materials,Institute of Chemistry,Chinese Academy of Sciences,Beij;

    Beijing National Laboratory for;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 高分子化学(高聚物);
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