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首页> 外文期刊>Journal of synchrotron radiation >Gamma-irradiation-induced micro-structural variations in flame-retardant polyurethane foam using synchrotron X-ray micro-tomography
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Gamma-irradiation-induced micro-structural variations in flame-retardant polyurethane foam using synchrotron X-ray micro-tomography

机译:使用同步X射线微断层扫描的γ-辐照诱导的阻燃聚氨酯泡沫中的微结构变化

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摘要

Flame-retardant polyurethane foams are potential packing materials for the transport casks of highly active nuclear materials for shock absorption and insulation purposes. Exposure of high doses of gamma radiation causes cross-linking and chain sectioning of macromolecules in this polymer foam, which leads to reorganization of their cellular microstructure and thereby variations in physico-mechanical properties. In this study, in-house-developed flame-retardant rigid polyurethane foam samples were exposed to gamma irradiation doses in the 0-20kGy range and synchrotron radiation X-ray micro-computed tomography (SR-mu CT) imaging was employed for the analysis of radiation-induced morphological variations in their cellular microstructure. Qualitative and quantitative analysis of SR-mu CT images has revealed significant variations in the average cell size, shape, wall thickness, orientations and spatial anisotropy of the cellular microstructure in polyurethane foam.
机译:阻燃聚氨酯泡沫是用于减震和绝缘目的的高活性核材料的运输葫芦的潜在包装材料。 高剂量γ辐射的曝光导致该聚合物泡沫中的大分子的交联和链切片,这导致其细胞微观结构的重组,从而改变了物理机械性能。 在本研究中,在0-20kgrous范围内暴露于内部开发的阻燃刚性聚氨酯泡沫样品和同步辐射X射线微计算断层扫描(SR-MU CT)成像用于分析 辐射诱导细胞微观结构的形态变异。 SR-MU CT图像的定性和定量分析揭示了聚氨酯泡沫中的细胞微观结构的平均电池尺寸,形状,壁厚,方向和空间各向异性的显着变化。

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