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Characterization of the cutting edge of glass and diamond knives for ultramicrotomy by scanning force microscopy using cantilevers with a defined tip geometry. Part II

机译:使用具有定义的尖端几何形状的悬臂,通过扫描力显微镜对玻璃和金刚石刀具的切削刃进行超显微术表征。第二部分

摘要

The cutting edge of glass as well as diamond knives was studied at high resolution using a scanning force microscope (SFM). The local shape of the cutting edge was estimated from single line profiles of the SFM topographs taking into account the exact shape of the probing tip estimated by a high-resolution field emission scanning electron microscope (FESEM). The glass knives were prepared by 'balanced breaking'. The radius of the investigated cutting edges was found to be 3.2-4.4 nm and 4.3-6.0 nm for the 35° and 45° diamond knife, respectively, and 3.4-4.3 nm for the glass knives. Besides the opening angle and the cutting edge radius, the friction of a knife during sectioning represents a significant factor influencing the quality of sections. Thus, the roughness of both the diamond clearance angle side and the back side was characterized as well. Corresponding RMS values of the roughness were found to be smaller on the back side (≈ 0.14 nm) than on the clearance angle side (≈ 0.26 nm).
机译:使用扫描力显微镜(SFM)在高分辨率下研究了玻璃和金刚石刀的切削刃。切削刃的局部形状是根据SFM地形图的单线轮廓估计的,其中考虑到了由高分辨率场发射扫描电子显微镜(FESEM)估计的探针尖​​端的确切形状。玻璃刀是通过“平衡破碎”制备的。发现对于35°和45°金刚石刀,所研究切削刃的半径分别为3.2-4.4 nm和4.3-6.0 nm,对于玻璃刀,其半径为3.4-4.3 nm。除打开角度和切削刃半径外,切片时刀的摩擦力是影响切片质量的重要因素。因此,也表征了金刚石间隙角侧和背面的粗糙度。发现对应的粗糙度RMS值在背面(≈0.14 nm)比在后角角度(≈0.26 nm)要小。

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