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Performance of PE pipes under extractive conditions: Effect of the additive package and processing

机译:提取条件下PE管的性能:添加剂包装和加工的影响

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摘要

Polyethylene (PE) compounds were prepared with five primary antioxidants and five application stabilizers, pelletized and extruded to pipes under industrial conditions. The pipes were stored in water at 80 ℃ for one year. Samples were taken at various intervals and a range of properties were determined from the functional group (methyl, vinyl, t-vinylene) content of the polymer to the crack propagation rate of the pipe. The results showed that chemical reactions take place both during extrusion and soaking. The chain structure of the polymer is modified only during processing, but not during storage, at least in the time scale of the study. The direction and extent of changes are determined mainly by the type of the application stabilizer, but primary antioxidants also influence them to some extent. Soaking modifies the physical, but not the chemical structure of the polymer. On the other hand, the chemical reactions of the additives determine color and stabilizer loss thus the residual stability of the pipes. The chemical structure of the polymer has a larger effect on final properties, on the rate of slow crack propagation and failure, than the physical structure of the pipes. As a consequence, the application stabilizer plays an important role in the determination of pipe performance.
机译:用五种主要抗氧化剂和五种应用稳定剂制备聚乙烯(PE)化合物,然后在工业条件下造粒并挤出到管道中。将管道在80℃的水中储存一年。以不同的时间间隔取样,并从聚合物的官能团(甲基,乙烯基,叔乙烯基)含量到管子的裂纹扩展速率来确定其性能范围。结果表明,化学反应在挤出和浸泡过程中均发生。至少在研究时间范围内,仅在加工过程中而不是在储存过程中改变聚合物的链结构。变化的方向和程度主要取决于应用稳定剂的类型,但主要的抗氧化剂也会在一定程度上影响它们。浸泡会改变聚合物的物理结构,但不会改变化学结构。另一方面,添加剂的化学反应决定了颜色和稳定剂的损失,从而决定了管道的剩余稳定性。与管道的物理结构相比,聚合物的化学结构对最终性能,缓慢的裂纹扩展和破坏速率的影响更大。因此,应用稳定剂在确定管道性能中起着重要作用。

著录项

  • 来源
    《Polymer Degradation and Stability 》 |2014年第1期| 196-203| 共8页
  • 作者单位

    Institute of Materials and Environmental Chemistry, Research Centre for Natural Sciences, Hungarian Academy of Sciences, H-1525 Budapest, P.O. Box 17.Hungary,Laboratory of Plastics and Rubber Technology, Department of Physical Chemistry and Materials Science, Budapest University of Technology and Economics,H-1521 Budapest, P.O. Box 91, Hungary;

    Institute of Materials and Environmental Chemistry, Research Centre for Natural Sciences, Hungarian Academy of Sciences, H-1525 Budapest, P.O. Box 17.Hungary,Laboratory of Plastics and Rubber Technology, Department of Physical Chemistry and Materials Science, Budapest University of Technology and Economics,H-1521 Budapest, P.O. Box 91, Hungary;

    Tisza Chemical Group Public Limited Company (TVK), H-3581 Tiszaujvaros, P.O. Box 20, Hungary;

    Clariant Produkte (Schweiz) AG, Rothausstrasse 61, CH-4132 Muttenz 1, Switzerland;

    Institute of Materials and Environmental Chemistry, Research Centre for Natural Sciences, Hungarian Academy of Sciences, H-1525 Budapest, P.O. Box 17.Hungary,Laboratory of Plastics and Rubber Technology, Department of Physical Chemistry and Materials Science, Budapest University of Technology and Economics,H-1521 Budapest, P.O. Box 91, Hungary;

    Institute of Materials and Environmental Chemistry, Research Centre for Natural Sciences, Hungarian Academy of Sciences, H-1525 Budapest, P.O. Box 17.Hungary,Laboratory of Plastics and Rubber Technology, Department of Physical Chemistry and Materials Science, Budapest University of Technology and Economics,H-1521 Budapest, P.O. Box 91, Hungary;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Polyethylene; Pipe; Antioxidant; Application stabilizer; Crack propagation;

    机译:聚乙烯管;抗氧化剂应用稳定剂;裂纹扩展;

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