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首页> 外文期刊>Polymer Degradation and Stability >THE THERMAL DEGRADATION MECHANISM OF POLYISOBUTYLENE .1. COMPARISON OF RESULTS WITH STATISTICAL PREDICTIONS PROVIDES A GENERAL INTERPRETATION OF THE MECHANISMS OF DECOMPOSITION
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THE THERMAL DEGRADATION MECHANISM OF POLYISOBUTYLENE .1. COMPARISON OF RESULTS WITH STATISTICAL PREDICTIONS PROVIDES A GENERAL INTERPRETATION OF THE MECHANISMS OF DECOMPOSITION

机译:聚异丁烯的热降解机理.1。与统计预测结果的比较提供了分解机理的一般解释

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Samples of polyisobutylene (PIE) have been degraded thermally as thin films on a thermocouple-controlled filament. In one series of these thermal experiments a temperature of 400 degrees C for 10 s was used in order to ensure only partial pyrolysis, whilst in another series of experiments a temperature of 610 degrees C for 30 s was used to achieve complete pyrolysis. In both cases the yields and molecular weights of the products were assessed by gas chromatography. The weight- and number-distributions of the oligomeric products observed have been compared with those predicted statistically on the basis of random scissions. The results show that the total pyrolysis can be interpreted exclusively in terms of parallel depropagation and random scission mechanisms. However, the partial pyrolysis results are not consistent with random scission statistics but instead imply that either some kinetically favoured scissions occur near the ends of the molecules or secondary reactions take place which favour the production of lower oligomers. [References: 7]
机译:聚异丁烯(PIE)的样品已热降解为热电偶控制灯丝上的薄膜。在这些热实验的一个系列中,为了确保仅部分热解,使用了400摄氏度的温度10秒钟,而在另一系列实验中,使用了610摄氏度的温度持续30 s的温度来实现完全热解。在两种情况下,产物的收率和分子量均通过气相色谱法评估。已将观察到的寡聚产物的重量和数量分布与根据随机剪切统计地预测的结果进行了比较。结果表明,总热解可以完全解释为平行分解和随机分裂机制。然而,部分热解的结果与随机断裂的统计数据不一致,而是暗示要么在分子的末端附近发生一些动力学上有利的断裂,要么发生有利于生产低聚物的次级反应。 [参考:7]

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