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A low-cost portable system for elemental mapping by XRF aiming in situ analyses

机译:XRF旨在瞄准原位分析的低成本便携式系统

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摘要

This work presents the development of a portable system that allows 2D elemental mapping of large areas (maximum of 35.0 x 35.0 cm(2)) by XRF. A measuring head, composed of an x-ray source and a detector, is mounted on a 3-axis stage with movement reproducibility better that 0.03 mm. The final elemental map resolution of 1.4 mm was experimentally determined in the best condition of collimation, and the same experiments indicate that the resolution is fully dominated by the x-ray beam spot size. The main goal of this new setup is to perform analyses of historical, archaeological and geological objects. Because it's lightweight, our setup has the potential to be of great utility for in situ analyses, given the great difficulty and high costs transporting the artifacts from the museum to a laboratory. The importance of this instrumentation is related to the need to identify the distribution of the chemical elements in large surface areas of cultural heritage objects by a non-destructive method.
机译:这项工作介绍了一个便携式系统的开发,允许XRF的2D元素映射大区域(最大35.0 x 35.0cm(2))。由X射线源和检测器组成的测量头安装在3轴级上,其移动再现性更好地为0.03mm。在准直的最佳条件下实验确定1.4mm的最终元素映射分辨率,并且相同的实验表明该分辨率完全由X射线束斑尺寸主导。这个新设置的主要目标是进行历史,考古和地质物体的分析。因为它的重量轻,我们的设置有可能具有很大的实用性,因为鉴于将博物馆的难度和高成本从博物馆运送到实验室的巨大困难和高成本。本仪器的重要性与通过非破坏性方法识别文化遗产物体大表面积中化学元素的分布有关。

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