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首页> 外文期刊>Journal of Applied Polymer Science >REACTIVE PROCESSING OF LLDPES IN COROTATING INTERMESHING TWIN-SCREW EXTRUDER .1. EFFECT OF PEROXIDE TREATMENT ON POLYMER MOLECULAR STRUCTURE
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REACTIVE PROCESSING OF LLDPES IN COROTATING INTERMESHING TWIN-SCREW EXTRUDER .1. EFFECT OF PEROXIDE TREATMENT ON POLYMER MOLECULAR STRUCTURE

机译:LLDPES在交联双螺杆挤出机中的反应过程.1。过氧化物处理对聚合物分子结构的影响

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摘要

Commercial ethylene-octene linear low-density polyethylene (LLDPE) polymers were reactively extruded with low levels of 2,5-dimethyl-2,5 di(t-butylperoxy) hexane to modify their molecular structure and processing properties. Peroxide levels were kept low to avoid crosslinking. This article examines the effects of reactive extrusion in a corotating intermeshing extruder. Gel content analyses and examination of extruded thin tapes indicated that the products were gel-free, but line-broadening in high-resolution C-13-NMR spectra suggested that some crosslinking did occur. Molecular weight distributions were broadened toward higher molecular weights, as expected. SEC estimates of long-chain branching in reacted polyethylenes were consistent with the results of C-13-NMR analyses. Under our extrusion conditions, the products contained about one long branch per number-average molecule. This result and data on changes in carbon-carbon unsaturation indicate that the major chain extension mechanism is an end-linking reaction between terminal vinyls or allylic radicals formed at chain ends and secondary radicals. Both types are produced by hydrogen abstraction on the LLDPE. All long branches originated at tertiary branch points. Changes in thermal behavior, as measured by DSC analyses, paralleled those observed by temperature-rising elution fractionation (TREF). SEC molecular weight measurements and long-branch determinations by SEC and C-13-NMR can be used to quantify the effects of peroxide treatment on the molecular structure of polyethylenes. DSC and TREF techniques, however, appear to be more sensitive than are SEC or NMR. Relatively minor variations in the degree of mixing and temperature control during reactive extrusion have noticeable effects on the molecular structures of the peroxide-treated LLDPEs. (C) 1995 John Wiley & Sons, Inc. [References: 39]
机译:将商业乙烯-辛烯线性低密度聚乙烯(LLDPE)聚合物与低含量的2,5-二甲基-2,5二(叔丁基过氧)己烷反应挤出,以改变其分子结构和加工性能。过氧化物含量保持在较低水平,以避免交联。本文研究了同向啮合挤出机中反应挤出的效果。凝胶含量分析和挤出的薄带检查表明,该产品不含凝胶,但在高分辨率C-13-NMR谱图中线展宽表明确实发生了某些交联。正如预期的那样,分子量分布朝着更高的分子量方向扩展。 SEC对反应聚乙烯中长链支化的估计与C-13-NMR分析的结果一致。在我们的挤出条件下,每个数均分子产物包含约一个长支链。该结果和关于碳-碳不饱和度变化的数据表明,主要的扩链机理是在链端形成的末端乙烯基或烯丙基自由基与仲自由基之间的末端连接反应。两种类型都是通过LLDPE上的氢提取产生的。所有长分支都起源于第三分支点。通过DSC分析测得的热行为变化与通过升温洗脱分级分离(TREF)观察到的变化平行。 SEC分子量测量和通过SEC和C-13-NMR进行长支链测定可用于量化过氧化物处理对聚乙烯分子结构的影响。但是,DSC和TREF技术似乎比SEC或NMR更敏感。反应挤出期间混合程度和温度控制的相对较小变化对过氧化物处理的LLDPE的分子结构产生了显着影响。 (C)1995 John Wiley&Sons,Inc. [参考:39]

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