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首页> 外文期刊>Biomaterials >The use of trans-vinylene formation in quantifying the spatial distribution of electron beam penetration in polyethylene. Single-sided, double-sided and shielded irradiation.
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The use of trans-vinylene formation in quantifying the spatial distribution of electron beam penetration in polyethylene. Single-sided, double-sided and shielded irradiation.

机译:使用反式亚乙烯基形成定量聚乙烯中电子束穿透的空间分布。单面,双面和屏蔽辐射。

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摘要

The use of the quantification of trans-vinylene unsaturations in irradiated ultrahigh molecular weight polyethylene (UHMWPE) in determining the spatial distribution of electron beam penetration was investigated. UHMWPE was irradiated with a 10MeV linear electron beam accelerator to 100kGy at both room temperature and 125 degrees C in air. The irradiation was carried out in shielded and unshielded single-sided and unshielded double-sided irradiation modes. Dose-depth profiles were measured by quantifying the yields of trans-vinylene unsaturations as a function of depth away from the e-beam incidence surfaces using infrared spectroscopy. The extent of beam penetration increased with increasing irradiation temperature as was manifested by the increase in the iso-dose penetration with the unshielded single-sided irradiation and increased dose overlap with the unshielded double-sided irradiation. The optimum thickness with maximum uniformity in dose-depth distribution for double-sided irradiation was 85 and90mm for 25 degrees C and 125 degrees C irradiation temperatures, respectively.
机译:研究了在辐照超高分子量聚乙烯(UHMWPE)中反式乙烯基的不饱和度定量在确定电子束穿透的空间分布中的用途。在室温和125摄氏度的空气中,用10MeV线性电子束加速器将UHMWPE辐照至100kGy。以屏蔽和非屏蔽的单面和非屏蔽的双面照射模式进行照射。通过使用红外光谱法定量反乙烯基乙烯基不饱和物的收率作为远离电子束入射表面的深度的函数来测量剂量深度分布。光束穿透的程度随辐照温度的升高而增加,这通过未屏蔽单面辐照的等剂量穿透率的增加和与未屏蔽双面辐照的剂量重叠的增加来体现。对于25°C和125°C的辐照温度,双面辐照的剂量深度分布具有最大均匀度的最佳厚度分别为85mm和90mm。

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