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Radiation-resistant properties of cross-linking PTFE for medical use

机译:交联PTFE用于医疗用的抗辐射性能

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摘要

The property changes of two types of partially cross-linking PTFE (XF1B) and totally cross-linking PTFE (XF2) treated by Co-60 gamma-rays were examined physically and chemically. The PTFEs were subjected to a tensile strength test, observation by digital microscope, X-ray diffraction, and Raman analysis. XF1B clearly showed a decrease in the tensile breaking strength at 1 kGy, while XF2 showed a decrease in the tensile breaking strength at a higher irradiation dose, 50 kGy. X-ray diffraction revealed an increase in the (004) peak intensity of XF1B after irradiation. On the other hand, the increase was not proportional to the irradiation dosages. An increase in the peak intensity was not observed in XF2. These results suggest that crystallization by irradiation advanced in XF1B, and the structural change was not significant in XF2. Raman analysis showed an increase in the spectral intensity of XF1B with increasing irradiation dosages, and no significant change in the spectral intensity of XF2. It was suggested that XF1B had been broken down into constituent subunits. The cross-linking PTFEs used in this study did not show marked differences in mechanical or chemical properties when compared with those of non-cross-linking PTFE previously reported. Particularly, it is considered that the mechanical deterioration of XF2 by irradiation was inhibited. Therefore, totally cross-linking PTFE is expected to be a useful medical material for sterilization by irradiation.
机译:物理化和化学检查由CO-60γ射线处理的两种类型的部分交联PTFE(XF1b)和完全交联的PTFE(XF2)的性能变化。对PTFE进行拉伸强度试验,通过数字显微镜,X射线衍射和拉曼分析观察。 XF1b清楚地显示出1kGy的拉伸断裂强度的降低,而XF2在较高照射剂量,50kGy的抗拉强度强度下降。 X射线衍射显示照射后XF1B的(004)峰强度的增加。另一方面,增加与辐照剂量没有成比例。在XF2中未观察到峰强度的增加。这些结果表明,通过XF1b的照射结晶,结构变化在XF2中不显着。拉曼分析显示XF1B的光谱强度随着辐照剂量增加的增加,并且XF2的光谱强度没有显着变化。有人建议XF1B已分解为组成亚基。与先前报道的非交联PTFE相比,本研究中使用的交联PTFE未显示出机械或化学性质的显着差异。特别地,认为XF2通过照射的机械劣化被抑制。因此,预计完全交联的PTFE将是通过辐射灭菌的有用医疗材料。

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