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(U)HMWPE as Neutron Radiation Shielding Materials: Impact of Gamma Radiation on Structure and Properties

机译:(u)HMWPE作为中子辐射屏蔽材料:伽马辐射对结构和性能的影响

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Due to their extreme high hydrogen contents, high molecular weight (HMW-) and ultra-high molecular weight (UHMW-) polyethylene (PE) are a comprehensible choice as neutron radiation shielding material in casks for storage and transport of radioactive materials. But as a direct consequence of inserting radioactive material in such casks, gamma radiation occurs. Hence, the impact of gamma radiation on the molecular structure of polyethylene has to be taken into consideration. Consequently, PE has to withstand any type of gamma radiation induced degradation affecting safety relevant aspects in order to be applicable for long term neutron radiation shielding purposes during the whole storage period (in Germany, for instance, up to 40 years). The scope of our investigation comprises an estimation of the impact of gamma radiation and temperature on the molecular and supra molecular structure of the two types of PE used as neutron radiation shielding cask components. A further point which is worth exploring is to what extent these changes are detectable by conventional analysis methods. Therefore, thermoanalytical measurements were performed such as differential scanning calorimetry (DSC), thermo mechanical analysis (TMA), dynamic mechanical analysis (DMA), and thermo gravimetric analysis (TGA). Additionally optical and weighing methods were applied. With those methods it is possible to detect structural changes in polyethylene induced by exposure to gamma radiation. The observed amounts of changes of the irradiated material are not safety relevant for the application of polyethylene as neutron radiation shielding material; moreover, some properties actually improve via irradiation.
机译:由于它们的极端高氢含量,高分子量(HMW-)和超高分子量(UHMW-)聚乙烯(PE)是作为储存和运输放射性物质的储存和运输中的中子辐射屏蔽材料的可理解选择。但是作为在这种桶中插入放射性物质的直接后果,发生伽马辐射。因此,必须考虑到γ辐射对聚乙烯分子结构的影响。因此,PE必须承受任何类型的伽马辐射引起的降解影响安全相关方面的劣化,以便适用于整个储存期间的长期中子辐射屏蔽目的(例如,在德国,例如长达40年)。我们的研究范围包括估计γ辐射和温度对两种类型PE的分子和同上的影响的影响,所述PE的分子和同上用作中子辐射屏蔽储存桶组件。值得探索的另一个点是通过常规分析方法可检测到这些变化的程度。因此,进行热分析测量,例如差示扫描量热法(DSC),热机械分析(TMA),动态机械分析(DMA)和热重量分析(TGA)。另外,应用了光学和称重方法。利用这些方法,可以检测通过暴露于γ辐射引起的聚乙烯的结构变化。所观察到的辐照材料的变化量不是对施加聚乙烯作为中子辐射屏蔽材料的安全性的安全性。此外,一些属性实际上通过辐射改善。

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