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首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >Comparison between decrosslinking of crosslinked high and low density polyethylenes via ultrasonically aided extrusion
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Comparison between decrosslinking of crosslinked high and low density polyethylenes via ultrasonically aided extrusion

机译:超声辅助挤出法交联的高密度和低密度聚乙烯的交联比较

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摘要

Among various polymer wastes, management of crosslinked plastics is a major environmental problem requiring a solution. Among various crosslinked plastics, recycling of crosslinked polyethylenes is of a great importance due to the presence of a three-dimensional network. To solve this problem, novel environmentally friendly technologies for decrosslinking of the crosslinked polymers are developed based on ultrasonically assisted single (SSE) and twin screw (TSE) extruders. In particular, decrosslinking of peroxide crosslinked high-density polyethylene (XHDPE) and low-density polyethylene (XLDPE) by means of an ultrasonic SSE and TSE is investigated. Barrel pressure, die pressure and ultrasonic power consumption during extrusion are recorded. Swelling, rheological, thermal analysis and tensile tests are used to elucidate the structureeproperty relationships of decrosslinked XHDPE and XLDPE. The frequency dependencies of the storage and loss moduli, complex viscosity and tangent loss of XHDPE, XLDPE and their decrosslinked networks are described by the post critical gel model with its parameters correlated with gel fraction and crosslink density. The dynamic, thermal and tensile properties of the decrosslinked XHDPE and XLDPE are greatly affected by the type of preferential bond breakage. It was found that the decrosslinking of XLDPE is more difficult than that of XHDPE. An analysis based on the Horikx function reveals a highly preferential breakage of crosslinks during decrosslinking of XHDPE. In contrast to decrosslinking of XHDPE, the presence of long-chain branching in XLDPE is found to lead to the breakage of its main chains during decrosslinking. An improvement and a reduction in mechanical properties of decrosslinked XHDPE and XLDPE are, respectively, observed in comparison with those of virgin XHDPE and XLDPE. Such differences in behavior are due to the occurrence of a highly preferential breakage of crosslinks in XHDPE and the breakage of main chains in XLDPE during ultrasonic decrosslinking. (C) 2015 Elsevier Ltd. All rights reserved.
机译:在各种聚合物废物中,交联塑料的管理是需要解决的主要环境问题。在各种交联塑料中,由于三维网络的存在,交联聚乙烯的回收非常重要。为了解决这个问题,基于超声辅助单(SSE)和双螺杆(TSE)挤出机,开发了用于交联聚合物去交联的新型环保技术。特别地,研究了通过超声SSE和TSE使过氧化物交联的高密度聚乙烯(XHDPE)和低密度聚乙烯(XLDPE)交联。记录挤出过程中的机筒压力,模头压力和超声功率消耗。使用溶胀,流变,热分析和拉伸试验来阐明去交联的XHDPE和XLDPE的结构性质关系。后临界凝胶模型描述了XHDPE,XLDPE及其脱交联网络的储能和损耗模量,复数粘度和切线损耗的频率依赖性,其参数与凝胶分数和交联密度相关。去交联的XHDPE和XLDPE的动态,热和拉伸性能受优先键断裂类型的很大影响。发现XLDPE的去交联比XHDPE的去交联更困难。基于Horikx函数的分析显示,在XHDPE解交联过程中,交联键的断裂非常优先。与XHDPE解交联相反,发现XLDPE中长链分支的存在会导致解交联过程中其主链断裂。与原始的XHDPE和XLDPE相比,分别观察到去交联的XHDPE和XLDPE的机械性能的改善和降低。行为上的这种差异是由于XHDPE中发生高度优先的交联断裂以及超声解交联期间XLDPE中的主链断裂所致。 (C)2015 Elsevier Ltd.保留所有权利。

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