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Electron beam treatment of polyacrylonitrile copolymer above the glass transition temperature in air and nitrogen atmosphere

机译:聚丙烯腈共聚物的电子束处理在空气和氮气氛中高于玻璃化转变温度

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摘要

The electron beam (EB) modification of polymers belongs to the group of chemical modification of polymers and bases on polymer radicals formed during the spatial and temporal precise input of electron energy. The radical induced chemical modification of polymers strongly depends on the constitution of polymer and the processing conditions during the EB treatment For the first time, the present study reports the EB treatment of polyacrylonitrile copolymer (Co-PAN) powder in air and nitrogen atmosphere at an average temperature of 125 degrees C in order to study the electron-induced reactions of Co-PAN above the glass transition temperature, but still below the initiation temperature of the thermal induced chemical reactions. The gas atmosphere during the EB treatment of Co-PAN powder strongly influenced the number of trapped radicals, the ratio of chain scission density to density of crosslinked units, the level of fluorescence, the EB induced functional groups, the extent of cyclization and the residual mass at a temperature of 800 degrees C. The nitrogen atmosphere during the EB modification of Co-PAN led to reduced cyclization and reduced residual mass at 800 degrees C with increasing gel content.
机译:聚合物的电子束(EB)改性属于聚合物的化学改性和在电子能量的空间和时间精确输入期间形成的聚合物自由基的基础。聚合物的自由基诱导的化学改性强烈取决于聚合物的结构和首次EB处理期间的加工条件,本研究报告了在空气和氮气氛中的聚丙烯腈共聚物(Co-Pan)粉末的EB处理为了研究玻璃化转变温度高于玻璃化转变温度,但仍低于热诱导的化学反应的启动温度,平均温度为125摄氏度。燃气气氛在EB治疗过程中的共同粉末粉末强烈影响捕获的自由基的数量,链裂化密度与交联单元密度的比例,荧光水平,EB诱导官能团,环化程度和残留程度。质量在800℃的温度下的质量。在EB改性的氮气氛中,共同化导致环化降低并在800℃下降低残余物质,随着凝胶含量增加。

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