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Experimental Investigation on Direct Micro Milling of Cemented Carbide

机译:硬质合金直接微铣削的实验研究

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摘要

Cemented carbide is currently used for various precise molds and wear resistant parts. However, the machining of cemented carbide still is a difficult challenge due to its superior mechanical properties. In this paper, an experimental study was conducted on direct micro milling of cemented carbide with a polycrystalline diamond (PCD) micro end mill. The cutting force characteristics, surface formation, and tool wear mechanisms were systematically investigated. Experimental results show that cemented carbide can be removed with ductile cutting utilizing the PCD tool with a large tool tip radius. Micro burrs, brittle pits, and cracks are the observed surface damage mechanisms. The tool wear process presents microchipping on the cutting edge and exfoliating on the rake face in the early stage, and then severe abrasive and adhesive wear on the bottom face in the following stage.
机译:硬质合金目前用于各种精密模具和耐磨零件。然而,硬质合金由于其优越的机械性能而仍是机加工难题。在本文中,对多晶金刚石(PCD)微型立铣刀对硬质合金的直接微铣削进行了实验研究。系统地研究了切削力特性,表面形成和刀具磨损机理。实验结果表明,可以使用具有大刀尖半径的PCD工具通过延性切削来去除硬质合金。观察到的表面损伤机理是微毛刺,脆性凹坑和裂纹。刀具磨损过程会在切削刃上出现微屑,并在前阶段在前刀面剥落,然后在下一个阶段在底面上出现严重的磨料和粘合剂磨损。

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