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首页> 外文期刊>Journal of Applied Polymer Science >Differential scanning calorimetry studies on high- and low-density annealed and irradiated polyethylenes: Influence aging
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Differential scanning calorimetry studies on high- and low-density annealed and irradiated polyethylenes: Influence aging

机译:高密度和低密度退火和辐照聚乙烯的差示扫描量热法研究:影响老化

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The effect of gamma-radiation, followed by 10 years storage at ambient conditions, on the thermal behavior of different types of high- and low-density commercial poly-ethylenes was studied. First, samples were annealed to improve the crystalline content. Next, they were irradiated, after which fusion endotherms melting temperatures, crystallinity indices, and lamellar thicknesses were obtained by differential scanning calorimetry (DSC). The change in the thermal parameters for the first and second meltings were related to the absorbed doses. Afterward, the samples were stored at ambient conditions for 10 years and then scanned again by DSC to assess the influence of aging on previously irradiated samples. The results showed that the changes on the morphological structure undergone by the samples with the storage time were highly dependent on the polyethylene type and the absorbed radiation dose. The high-density polyethylene was the most sensitive to radiation and storage, whereas the low-density polyethylene with the lowest molecular weight and the highest degree of branching was the least affected. In general, the changes observed during irradiation can be explained in terms of an increase of imperfections and chain scissions. The storage can be understood as a slow crystallization process at low radiation doses, and as a decrease of the crystalline structure at high doses. (C) 2003 Wiley Periodicals, Inc. [References: 27]
机译:研究了γ辐射,然后在环境条件下保存10年,对不同类型的高密度和低密度商业聚乙烯的热行为的影响。首先,将样品退火以提高晶体含量。接下来,对其进行辐照,之后通过差示扫描量热法(DSC)获得熔融吸热峰的熔融温度,结晶度指数和层状厚度。第一次熔化和第二次熔化的热参数的变化与吸收剂量有关。之后,将样品在环境条件下保存10年,然后再次用DSC扫描以评估老化对先前辐照样品的影响。结果表明,样品随保存时间的变化而发生的形态结构变化与聚乙烯的类型和吸收的辐射剂量高度相关。高密度聚乙烯对辐射和储存最敏感,而分子量最低,支化度最高的低密度聚乙烯受影响最小。通常,可以根据缺陷和链条切割的增加来解释辐照期间观察到的变化。可以将储存理解为在低辐射剂量下缓慢的结晶过程,以及在高剂量下晶体结构的减少。 (C)2003 Wiley Periodicals,Inc. [参考:27]

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