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首页> 外文期刊>Polymer Degradation and Stability >Metallocene ethylene-1-octene copolymers: Effect of extrusion conditions on thermal oxidation of polymers with different comonomer content
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Metallocene ethylene-1-octene copolymers: Effect of extrusion conditions on thermal oxidation of polymers with different comonomer content

机译:茂金属乙烯-1-辛烯共聚物:挤出条件对不同共聚单体含量的聚合物热氧化的影响

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Metallocene ethylene-1-octene copolymers having different densities and comonomer content ranging from 11 to 36 wt% (m-LLDPE), and a Ziegler copolymer (z-LLDPE) containing the same level of short-chain branching (SCB) corresponding to one of the m-LLDPE polymers, were subjected to extrusion. The effects of temperature (210—285 ℃) and multi-pass extrusions (up to five passes) on the rheological and structural characteristics of these polymers were investigated using melt index and capillary rheometry, along with spectroscopic characterisation of the evolution of various products by FTIR, ~(13)C-NMR and colour measurements. The aim is to develop a better understanding of the effects of processing variables on the structure and thermal degradation of these polymers. Results from rheology show that both extrusion temperature and the amount of comonomer have a significant influence on the polymer melt thermo-oxidative behaviour. At low to intermediate processing temperatures, all m-LLDPE polymers exhibited similar behaviour with crosslinking reactions dominating their thermal oxidation. By contrast, at higher processing temperatures, the behaviour of the metallocene polymers changed depending on the level of comonomer content: higher SCB gave rise to predominantly chain scission reactions whereas polymers with lower level of SCB continued to be dominated by crosslinking. This temperature dependence was attributed to changes in the different evolution of carbonyl and unsaturated compounds including vinyl, vinylidene and trans-vinylene.
机译:密度和共聚单体含量在11至36 wt%之间的茂金属乙烯-1-辛烯共聚物(m-LLDPE)和含有相同水平的短链支化(SCB)的齐格勒共聚物(z-LLDPE)将其中的m-LLDPE聚合物进行挤出。使用熔体指数和毛细管流变法研究了温度(210-285℃)和多道次挤出(最多五道次)对这些聚合物的流变和结构特性的影响,并通过光谱表征了各种产物的演化。 FTIR,〜(13)C-NMR和颜色测量。目的是更好地了解加工变量对这些聚合物的结构和热降解的影响。流变学结果表明,挤出温度和共聚单体的量均对聚合物熔体的热氧化行为具有重要影响。在低至中等的加工温度下,所有的m-LLDPE聚合物均表现出相似的行为,交联反应主导了其热氧化反应。相反,在较高的加工温度下,茂金属聚合物的行为随共聚单体含量的变化而变化:较高的SCB引起主要的断链反应,而较低SCB的聚合物继续以交联为主导。这种温度依赖性归因于羰基化合物和不饱和化合物(包括乙烯基,亚乙烯基和反亚乙烯基)的不同演化变化。

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