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Evaluation of a Mirror. Polishing Technique for Fluorocarbon Polymer Surfaces for Reduction of Contamination from Containers Used in Ultratrace Analysis

机译:评估镜子。氟碳聚合物表面的抛光技术,可减少用于超痕量分析的容器中的污染

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摘要

A mirror-polishing technique for fluorocarbon polymer surfaces using high-precision diamond cutting tools was developed. The goal of this technique was the reduction of ultratrace elemental analysis contamination levels of containers fabricated from such mirror-polished materials. Remarkably smooth inner surfaces with degrees of flatness of 0.1 μm peak-to-valley (PTV) for containers fabricated from mirror-polished PTFE materials were obtained, in contrast to degrees of surface flatness of more than 30μm PTV for commercially available PTFE containers. (Here, PTV denotes the difference between the highest peak and deepest valley in a scanned area of 10 × 10/μm.) Extractable impurity levels for mirror-polished PTFE container surfaces were reduced by more than 1 order of magnitude relative to those of unpolished PTFE containers. The surface conditions of the PTFE containers were observed by atomic force and scanning electron microscopy. The microphotographs so obtained suggest that the degree of surface smoothness of the containers is proportional to their ultratrace metallic contamination levels.
机译:开发了使用高精度金刚石切削工具对碳氟聚合物表面进行镜面抛光的技术。该技术的目标是降低由这种镜面抛光材料制成的容器的超痕量元素分析污染水平。对于由镜面抛光的PTFE材料制成的容器,获得了非常光滑的内表面,其平整度峰谷(PTV)为0.1μm,而市售PTFE容器的表面平整度超过了30μmPTV。 (在这里,PTV表示在10×10 /μm的扫描区域中最高峰和最深谷之间的差。)镜面抛光的PTFE容器表面的可萃取杂质水平与未抛光的相比降低了1个数量级以上。 PTFE容器。通过原子力和扫描电子显微镜观察PTFE容器的表面状况。如此获得的显微照片表明,容器的表面光滑度与它们的超痕量金属污染水平成正比。

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