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首页> 外文期刊>Journal of Polymer Science, Part B. Polymer Physics >Surface-directed morphology evolution in ternary blends of polyethylene, polypropylene, and ethylene-propylene copolymer: A study by laser scanning confocal fluorescence microscopy
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Surface-directed morphology evolution in ternary blends of polyethylene, polypropylene, and ethylene-propylene copolymer: A study by laser scanning confocal fluorescence microscopy

机译:聚乙烯,聚丙烯和乙烯-丙烯共聚物的三元共混物的表面定向形态演变:激光扫描共聚焦荧光显微镜的研究

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摘要

With laser scanning confocal fluorescence microscopy, we demonstrate a novel type of morphology evolution in moderately thick films (70-100 mum) of ternary blends of polypropylene (PP), polyethylene (PE), and ethylene-propylene rubber (EPR), in which EPR is labeled with a benzothioxanthene dye (HY-EPR). The blends are prepared by solution blending, and the phase morphology evolves during the annealing of the blend films in a stainless steel mold. Our results indicate that wetting of the mold surface is a driving force in morphology evolution for the two blend compositions investigated. For 81/14/5 PP/PE/HY-EPR, phase evolution within the mold results in a laminar structure and hydrodynamic channels, features which have previously been found in thin films of polymer blends as a result of surface-directed spinodal decomposition. In a blend with a lower weight fraction of the dispersed phase (92/7/1 PP/PE/ HY-EPR), we find that the PE/HY-EPR domains are larger and more polydisperse closer to the surface because of wetting of the mold wall. We also show that the phase morphology in these films can be controlled by the nature of one or both of the surfaces being varied. When one of the mold surfaces is replaced with a thin film of PP homopolymer, we observe draining of PE/HY-EPR from the PP to the mold surface, which results in a bilayer structure. A trilayer morphology is likewise obtained by the replacement of both mold surfaces with PP. We also carry out three-dimensional image reconstruction on a single PE/HY-EPR particle within the 81/14/5 PP/PE/HY-EPR blend to obtain detailed information on the interphase structure. We find that HY-EPR of this composition (30/70 ethylene/propylene) fully coats the PE dispersed phase and partially penetrates the PE droplets. This result falls between the interphase structures found for previously investigated EPR compositions (40/60 and 80/20 ethylene/ propylene). (C) 2003 Wiley Periodicals, Inc. [References: 74]
机译:通过激光扫描共聚焦荧光显微镜,我们证明了聚丙烯(PP),聚乙烯(PE)和乙丙橡胶(EPR)的三元共混物的中等厚度薄膜(70-100 mum)中的新型形态演变EPR用苯并噻吨蒽染料(HY-EPR)标记。共混物是通过溶液共混制备的,在不锈钢模具中共混物薄膜的退火过程中,会发生相态演变。我们的结果表明,对于所研究的两种共混物,模具表面的润湿是形态演变的驱动力。对于81/14/5 PP / PE / HY-EPR,模具内的相变会形成层状结构和流体动力学通道,这些特征以前是在聚合物共混物薄膜中由于表面定向的旋节线分解而发现的。在分散相的重量分数较低的共混物中(92/7/1 PP / PE / HY-EPR),我们发现PE / HY-EPR结构域更大,并且由于润湿而更分散在表面附近模具壁。我们还表明,可以通过改变一个或两个表面的性质来控制这些膜中的相形态。当其中一个模具表面替换为PP均聚物薄膜时,我们观察到PE / HY-EPR从PP排到模具表面,这导致了双层结构。通过用PP代替两个模具表面同样获得三层形态。我们还对81/14/5 PP / PE / HY-EPR共混物中的单个PE / HY-EPR颗粒进行了三维图像重建,以获得有关相间结构的详细信息。我们发现这种组成的HY-EPR(30/70乙烯/丙烯)完全覆盖了PE分散相,并部分渗透了PE液滴。该结果落在先前研究的EPR组合物(40/60和80/20乙烯/丙烯)的相间结构之间。 (C)2003 Wiley Periodicals,Inc. [参考:74]

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