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Blends of polyamide-6 with acrylic core-shell impact modifiers

机译:聚酰胺-6与丙烯酸核壳抗冲改性剂的混合物

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摘要

Blends of polyamide-6 (PA6) and acrylic core-shell impact modifiers (CSIM) were made by an extruder process as well as a reactor process. On the extruder blends, the impact behaviour was studied as a function of temperature while changing the type of CSIM, the CSIM concentration (0¿40%) and the blending conditions. Reactor blends were prepared from caprolactam/CSIM mixtures via a hydrolytic polymerization process initiated either with water or with aminocapronic acid. The aminocapronic acid-initiated process is faster. The influence of reaction conditions on the deagglomeration of the CSIM, the melt flow index and the impact behaviour of the blends were studied. The degree of grafting of PA6 on the CSIM and the melt rheological behaviour of some samples have been investigated. The CSIM agglomerates were found to be broken up in the caprolactam starting mixture and did not coalesce to bigger particles. With the reactor blend method, often highly viscous melts were obtained. This is probably due to the formation of a comb-like structure of CSIM chains dissolved in caprolactam to which PA6 chains had been grafted.
机译:聚酰胺6(PA6)和丙烯酸核壳抗冲改性剂(CSIM)的共混物是通过挤出机工艺和反应器工艺制得的。在挤出机共混物上,研究了冲击行为随温度的变化,同时改变了CSIM的类型,CSIM的浓度(0-40%)和混合条件。通过用水或氨基己酸引发的水解聚合过程,由己内酰胺/ CSIM混合物制备反应混合物。氨基己酸引发的过程更快。研究了反应条件对CSIM的解聚,熔体流动指数和共混物冲击行为的影响。研究了PA6在CSIM上的接枝度和一些样品的熔体流变行为。发现CSIM附聚物在己内酰胺起始混合物中破碎,没有聚结成更大的颗粒。使用反应器共混方法,通常会获得高粘度的熔体。这可能是由于形成了溶解在己内酰胺中的CSIM链的梳状结构,PA6链已嫁接到该结构上。

著录项

  • 作者单位
  • 年度 1994
  • 总页数
  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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