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首页> 外文期刊>Journal of Applied Polymer Science >Modeling the Role of Stabilizing Additives During Melt Recycling of High-Density Polyethylene
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Modeling the Role of Stabilizing Additives During Melt Recycling of High-Density Polyethylene

机译:模拟高密度聚乙烯熔体回收过程中稳定添加剂的作用

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摘要

Post-use high-density polyethylene, almost devoid of any stabilizing agents, was restabilized in various degrees and subjected to multiple extrusion cycles at different reprocessing temperatures for assessing its chemical stability. The process- induced material degradation was attributed primarily to long-chain branching caused by crosslinking. It was monitored by an increase in viscosity and evaluated on the basis of an approximate expression derived using fundamental principles of macromolecular rheology .It was determined that long-chain branching increases with temperature and the extent of processing, while decreasing with the amount of restabilizing agent added. A simple model was developed to quantitatively describe the progress of the chemical change by relating it to key material and operational variables. Besides constituting a useful method of monitoring and controlling polymer modification during processing, this model suggests ways of optimizing stabilization according to the particular pro- cessing and product requirements.
机译:几乎没有任何稳定剂的使用后高密度聚乙烯经过不同程度的再稳定化处理,并在不同的后处理温度下经受了多次挤出循环,以评估其化学稳定性。过程引起的材料降解主要归因于交联引起的长链支化。用大分子流变学的基本原理得出的近似表达式对粘度进行监测并进行评估。确定长链支链随温度和加工程度的增加而增加,而随稳定剂的用量而减少。添加。开发了一个简单的模型,通过将其与关键材料和操作变量相关联来定量描述化学变化的过程。除了构成一种在加工过程中监测和控制聚合物改性的有用方法之外,该模型还提出了根据特定工艺和产品要求优化稳定性的方法。

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