首页> 外文期刊>journal of applied polymer science >Radical decay and color formation at various temperatures in unplasticized poly(vinyl chloride) irradiated in vacuo at 25°C
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Radical decay and color formation at various temperatures in unplasticized poly(vinyl chloride) irradiated in vacuo at 25°C

机译:在25°C真空照射的未增塑聚氯乙烯中,不同温度下的自由基衰变和颜色形成

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AbstractMoldings were irradiated at ambient temperaturein vacuowith 2 m.e.v. electrons to doses of 5.9–7.3 Mrad. The decay of radicals was followed by EPR spectroscopy at 80, 55, and 30°C. while simultaneous extinction measurements were made at 300–700 mμ with a recording spectrophotometer. The radical decay data indicated the presence of three species at each temperature, decaying exponentially with time, with half‐lives of 20 min., 210 min., and 135 hrs. at 80°C. of 40 min., 400 min., and 141 hrs. at 55°C., and of 54 min., 720 min., and 3200 hrs. at 30°C.Gvalues of 1.6, 2.0, and 1.4 were obtained for radical formation at 25°C. by back‐extrapolation of decay curves from the three temperatures to the end of the irradiation period. The activation energy of radical decay was found to be 4.4, 5.0, and 13.7 kcal./mole for the short‐lived, intermediatelived, and long‐lived radicals, respectively. The optical data has a broad absorption maximum at 500–550 mμ and a series of seven absorption peaks with maxima at 505–510, 483–485, 458–460, 430–435, 400–405, 364–365, and 329–330 mμ. The concentration of the material producing the broad bands was found to be inversely proportional to the long‐lived radical concentration. The fine‐structure peaks are consistent with literature data for a polyene
机译:摘要在室温下用2个m.e.v.电子真空辐照成型件,剂量为5.9–7.3 Mrad。自由基衰变后,在80°C、55°C和30°C下进行EPR光谱分析,同时使用记录分光光度计在300-700 mμ下进行消光测量。自由基衰变数据表明,在每个温度下存在三种物种,随时间呈指数衰变,半衰期分别为20分钟、210分钟和135小时。在 80°C 下 40 分钟、400 分钟和 141 小时。在 55°C 下,54 分钟、720 分钟和 3200 小时。在30°C下,通过反向外推从三个温度到辐照期结束的衰变曲线,在25°C下自由基形成的G值为1.6、2.0和1.4。自由基衰变的活化能分别为4.4、5.0和13.7 kcal/mole。光学数据在500-550 mμ处具有较宽的最大吸收量,在505-550 mμ处有一系列7个吸收峰,最大值为505-510、483-485、458-460、430-435、400-405、364-365和329-330 mμ。发现产生宽带的材料的浓度与长寿命的自由基浓度成反比。精细结构峰与多烯的文献数据一致

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