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Optimizing non-Pb radiation shielding materials using bilayers.

机译:使用双层优化无铅辐射屏蔽材料。

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摘要

PURPOSE: The objective of this study was to demonstrate that the weight of non-Pb radiation shielding materials can be minimized by structuring the material as a bilayer composed of different metal-powder-embedded elastomer layers. METHODS: Measurements and Monte Carlo (MC) calculations were performed to study the attenuation properties of several non-Pb metal bilayers over the x-ray energy range 30-150 keV. Metals for the layers were chosen on the basis of low cost, nontoxicity, and complementary photoelectric absorption characteristics. The EGSnrc user code cavity.cpp was used to calculate the resultant x-ray fluence spectra after attenuation by these metal layers. Air kerma attenuation was measured using commercially manufactured metal/elastomer test layers. These layers were irradiated using the primary standard calibration beams at the Institute for National Measurement Standards in Ottawa, Canada utilizing the six x-ray beam qualities recommended in the German Standard DIN 6857. Both the measurements and the calculations were designed to approximate surface irradiation as well as penetrating radiation at 10 mm depth in soft tissue. The MC modeling point and the position of the measurement detector for surface irradiation were both directly against the downstream face of the attenuating material, as recommended in DIN 6857. RESULTS: The low-Z upstream/high-Z downstream ordering of the metal bilayers provided substantially more attenuation than the reverse order. Optimal percentages of each metal in each bilayer were determined for each x-ray radiation beam quality. CONCLUSIONS: Depending on the x-ray quality, appropriate choices of two complementary metal-embedded elastomer layers can decrease the weight of radiation shielding garments by up to 25% compared to Pb-based elastomer garments while providing equivalent attenuation.
机译:目的:本研究的目的是证明通过将材料构造为由不同的金属粉末包埋的弹性体层组成的双层结构,可以最大程度地减少非铅辐射屏蔽材料的重量。方法:进行了测量和蒙特卡洛(MC)计算,以研究在30-150 keV的X射线能量范围内几种非Pb金属双层的衰减特性。基于低成本,无毒和互补的光电吸收特性来选择用于层的金属。使用EGSnrc用户代码cavity.cpp来计算这些金属层衰减后的x射线通量谱。使用商业生产的金属/弹性体测试层测量空气比释动能衰减。这些层是使用加拿大标准DIN 6857推荐的六种X射线束质量,使用加拿大渥太华国家测量标准协会的主要标准校准束辐照的。测量和计算均旨在将表面辐照近似为以及穿透软组织中10毫米深度处的辐射。根据DIN 6857的建议,MC建模点和用于表面辐射的测量检测器的位置都直接朝向衰减材料的下游面。结果:提供的金属双层的低Z上游/高Z下游排序衰减比逆序大得多。对于每种X射线辐射束质量,确定每种双层中每种金属的最佳百分比。结论:根据X射线质量,与Pb基弹性体服装相比,适当选择两个互补的金属嵌入弹性体层可以使辐射屏蔽服装的重量减少多达25%,同时提供同等的衰减。

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