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Manufacturing and preparation of micro cutting tools: influence on chip formation and surface topography when micro cutting titanium

机译:微切工具的制造和制备:微切钛时对芯片形成和表面形貌的影响

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Cutting edge preparation is widely used in conventional cutting processes. It stabilizes the cutting edge and is done to improve coating adhesion. However, the preparation of the cutting edge is accompanied by an increase in cutting edge roundness. This rounding results into larger effective negative rake angles, especially at small undeformed chip thicknesses, as they prevail in micro and ultraprecision processes. In this paper, the influence of the cutting edge micro geometry at very small undeformed chip thicknesses is investigated. A sharp, a rounded and a chamfered cutting edge are manufactured and examined at undeformed chip thicknesses of 0.4 μm, 5.2 μm and 10.0 μm. The resulting chip formation, forces and surface quality are examined when orthogonal cutting commercially pure titanium, a material used for example for bio-applications.
机译:切削刃制剂广泛用于常规切割过程中。 它稳定了切削刃,并进行以改善涂层粘附。 然而,切削刃的制备伴随着切削刃圆度的增加。 这种圆形导致较大的有效负耙角,特别是在小型未变形的芯片厚度下,因为它们在微观和超出过程中占上风。 本文研究了切削刃微观几何形状在非常小的未变形芯片厚度下的影响。 在0.4μm,5.2μm和10.0μm的未变形芯片厚度下制造和检查锋利的圆形和倒角切削刃。 当正交切割商业纯钛时,检查所得到的芯片形成,力和表面质量,例如用于生物应用的材料。

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