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Reducing the Edge Chipping for Capillary End Face Grinding and Polishing

机译:减少毛细管端面磨削和抛光的边缘切削

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摘要

This paper presents results of glass capillary end face grinding and polishing by approach that reduces the edge chipping. Brittle materials have natural tendency for edge chipping what leads to beveling the sharp edges. Not beveled sharp edges on glass capillary are important for special applications like surface tension measurement of small liquid samples. We use common grinding and polishing process for capillary end face machining modified with gradual decreasing of grinding load based on the relation of the critical chipping load. Achieved surface roughness is measured using atomic force microscopy (AFM). Capillary inner edge quality is checked both with optical microscopes and electron microscope too. We achieved a non-chipped capillary inner edge with radius down to 100 nm.
机译:本文通过减少边缘碎片的方法提出了玻璃毛细管端面研磨和抛光的结果。脆性材料具有边缘切削的自然趋势,导致尖锐的边缘倾斜。在玻璃毛细管上没有倾斜的锋利边缘对于小型液体样品的表面张力测量等特殊应用非常重要。基于临界裂线负荷的关系,我们使用用于逐渐减小的磨削载荷逐渐减小的毛细管端面加工使用常见的研磨和抛光工艺。使用原子力显微镜(AFM)测量达到表面粗糙度。用光学显微镜和电子显微镜检查毛细管内边缘质量。我们通过半径为100nm实现了非嵌入式毛细管内边缘。

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