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首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >Processing and characterization of reactive polystyrene/hyperbranched polyester blends
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Processing and characterization of reactive polystyrene/hyperbranched polyester blends

机译:活性聚苯乙烯/超支化聚酯共混物的加工和表征

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摘要

Newly developed hyderbranched poolyols (HBPs) possess a compact, highly branched, three-dimentional (3D) structure, which has a high density of functional end groups and inherently low viscosity. The combination of these two properties,low viscosity and high reactivity,makes HBP polymers attractive candidates for reactive polymer blending. The HBP additives are able to behave as lubricants during processing and as self-compatibilizing toughening agents in the final blend formulation. In this work, we have studied a series of blendsof hyperbranched polyester with high molecular weight polystyrenes. The processability and compatibility in the blends were investigated as a frnction of volume fraction of the HBP added and reactivity of the matrix phase. We fine, through processing and rheological studies, that HBPs are extremely effective processing aids. A significan drop in the blend viscosity occurs immediately on addition of HBP, even at levels as low as 2 vol.%. Characterization including microscopy, thermal analysis and Fourier transform infrared spectroscopy (FTIR) indicates that the HBP froms immiscible blends with polystyrene and styrene maleic anhydride (SMA) copolymers. A significant degree of compatibilization occurs in the reactive systems, as evidenced by shifts in the thermal transitions of the HBP phase, and by morphology refinementobserved by electron microscopy. The degree of compatibilization in the blends was found to increase with SMA reactivity.
机译:新开发的氢化支链多元醇(HBP)具有紧密的,高度支化的三维(3D)结构,具有高密度的官能端基和固有的低粘度。低粘度和高反应性这两种性能的结合使HBP聚合物成为反应性聚合物共混物的有吸引力的候选者。 HBP添加剂能够在加工过程中充当润滑剂,并在最终混合物配方中充当自增韧的增韧剂。在这项工作中,我们研究了高支化聚酯与高分子量聚苯乙烯的一系列共混物。研究了共混物中的可加工性和相容性,作为添加的HBP的体积分数和基体相的反应性的分数。通过加工和流变学研究,我们认为HBP是极其有效的加工助剂。加入HBP时,即使粘度低至2%(体积),掺混物粘度也会显着下降。包括显微镜,热分析和傅立叶变换红外光谱(FTIR)在内的表征表明,HBP与聚苯乙烯和苯乙烯马来酸酐(SMA)共聚物不混溶。 HBP相热跃迁的变化以及电子显微镜观察到的形态学细化证明了反应体系中具有显着的相容性。发现共混物中的相容度随SMA反应性而增加。

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