首页> 外文期刊>Journal of Vinyl & Additive Technology >Additive Interactions in the Stabilization of Film Grade High-Density Polyethylene. Part I: Stabilization and Influence of Zinc Stearate During Melt Processing
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Additive Interactions in the Stabilization of Film Grade High-Density Polyethylene. Part I: Stabilization and Influence of Zinc Stearate During Melt Processing

机译:薄膜级高密度聚乙烯稳定的添加剂相互作用。 第一部分:熔融加工过程中锌硬脂酸锌的稳定和影响

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摘要

The melt stabilization activity of some of the most commercially significant phenolic antioxidants and phosphites (alone and in combination), without and with zinc stearate, was studied in high-density polyethylene (HDPE) produced by Phillips catalyst technology. Multiple pass extrusion experiments were used to degrade the polymer melt progressively. The effect of stabilizers were used to degrade the polymer melt progressively. The effect of stabilizers was assessed via melt flow rate (MFR) and yellowness index (YI) measurements conducted as a function of the number of passes. The level of the phenolic antioxidant remaining after each extrusion was determined by high-performance liquid chromatography (HPLC). Phenolic antioxidants and phosphites both improved the melt stability of the polymer in terms of melt viscosity retention; the melt stability of the polymer in terms of melt viscosity retention; the influence of zinc stearate was found to be almost insignificant. However, phosphites and zinc stearate decreased the discoloration caused by the phenolic antioxidants. A correlation was found between the melt stabilizationh performance of phosphites and their hydroperoxide decomposition efficiency determined via a model hydroperoxide compound. Steric and electronic effects associated with the phosphorus atom influenced the reactivity towards hydroperoxides. Furthermore, high hydrolytic stability did not automatically result in lower efficiency. Besides phosphite molecular structure, stabilization activity was also influenced by the structure of the primary phenolic antioxidant and the presence of zinc stearate.
机译:在Phillips催化剂技术生产的高密度聚乙烯(HDPE)中研究了一些最多商业上显着的酚醛抗氧化剂和磷酸盐(单独和组合)的熔体稳定活性。使用多种通过挤出实验逐渐降解聚合物熔体。使用稳定剂的效果逐渐降解聚合物熔体。通过熔融流速(MFR)和作为通过通过的函数进行的熔融流速(MFR)和黄度指数(Yi)测量来评估稳定剂的效果。通过高效液相色谱法(HPLC)测定每次挤出后剩余酚类抗氧化剂的水平。酚类抗氧化剂和磷矿在熔体粘度保留方面都改善了聚合物的熔体稳定性;聚合物在熔体粘度保留方面的熔体稳定性;发现锌硬脂酸锌的影响几乎微不足道。然而,磷酸盐和锌硬脂酸锌降低了酚类抗氧化剂引起的变色。在磷酸盐的熔体稳定性性能之间发现了相关性及其通过模型氢过氧化物化合物确定的氢过氧化物分解效率。与磷原子相关的空间和电子效应影响了对氢过氧化物的反应性。此外,高水解稳定性不会自动导致较低的效率。除亚磷酸盐分子结构外,稳定活性也受到原发性酚类抗氧化剂结构的影响和硬脂酸锌的存在。

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    Manchester Metropolitan University Department of Chemistry and Materials Centre for Materials Science Chester Street Manchester M1 6GD UK;

    Manchester Metropolitan University Department of Chemistry and Materials Centre for Materials Science Chester Street Manchester M1 6GD UK;

    Manchester Metropolitan University Department of Chemistry and Materials Centre for Materials Science Chester Street Manchester M1 6GD UK;

    Manchester Metropolitan University Department of Chemistry and Materials Centre for Materials Science Chester Street Manchester M1 6GD UK;

    Repsol YPF 183 Embajadores 28045 Madrid Spain;

    Instituto de Ciencia y Tecnologia de Polimeros C.S.I.C. 3 Juan de la Cierva 28006 Madrid Spain;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 高分子化合物工业(高聚物工业);
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