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首页> 外文期刊>Macromolecular reaction engineering >Radiation Induced Long Chain Branching in High-Density Polyethylene through a Reactive Extrusion Process
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Radiation Induced Long Chain Branching in High-Density Polyethylene through a Reactive Extrusion Process

机译:通过反应挤出工艺辐射诱导高密度聚乙烯中的长链支化

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A reactive extrusion process is developed for the modification of the rheological properties of a high density polyethylene (HDPE) by inducing long chain branching (LCB) using a photoinitiator and ultraviolet (UV) light. A central composite response surface design is selected to design the experimental runs at different photoinitiator concentrations, polymer flow rates, and extruder screw speeds. The selected processing factors at the specified levels produce negligible amounts of gel as indicated by extraction experiments. Linear viscoelastic properties at low frequencies indicate the presence of long chain branches. Both zero shear viscosity and relaxation time of the modified samples are enhanced with the branching. According to further molecular characterization, the molecular weight averages are slightly increased, however, the polydispersity index (PDI) of the modified samples remains the same.
机译:通过使用光引发剂和紫外线(UV)引发长链支化(LCB),开发了一种反应挤出工艺,用于改变高密度聚乙烯(HDPE)的流变性。选择中央复合响应表面设计,以设计在不同光引发剂浓度,聚合物流速和挤出机螺杆速度下的实验运行。如提取实验所示,指定水平的所选加工因子产生的凝胶量可忽略不计。低频的线性粘弹性表明存在长链分支。改性样品的零剪切粘度和弛豫时间都随着分支而增加。根据进一步的分子表征,分子量平均值略有增加,但是,改性样品的多分散指数(PDI)保持不变。

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