首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >The micro-cutting performance of cermet and coated WC micro-mills in machining of TC4 alloy micro-grooves
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The micro-cutting performance of cermet and coated WC micro-mills in machining of TC4 alloy micro-grooves

机译:CERMET和涂层WC微型轧机的微型切割性能在TC4合金微槽的加工中

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摘要

Compared with commercial CrTiAlN-coated WC micro-mills, self-developed Ti(C7N3)-based cermet micro-mills were evaluated by milling of TC4 alloy micro-grooves. Tool damage, micro-milling forces, and surface quality of micro-grooves were analyzed to examine the cutting performance. The main wear mechanisms of cermet and WC micro-mills were dominated by micro-chipping, flank wear, built-up edge, and adhesive wear. Except for these failure modes, coated WC micro-mills had broken. The peak-to-valley (P-to-V) feed and normal forces using the coated WC micro-mills were much higher than cermet micro-mills. And micro-grooves milled by cermet and coated WC micro-mills achieved a good surface roughness. The top burrs were first found at the cutting distance of 12 mm using cermet micro-mills, but the top burrs appeared during the entire machining using coated WC micro-mills. These results indicated that cermet micro-mills were more suitable for micro-milling TC4 alloy than coated WC micro-mills.
机译:与商业CRTIALN涂覆的WC微磨机相比,通过研磨TC4合金微槽来评价自我开发的Ti(C7N3)基础的金属陶瓷微磨机。 分析了刀具损坏,微铣削力和微槽的表面质量,以检查切割性能。 CERMET和WC微型磨机的主磨损机制由微碎片,侧面磨损,内置边缘和粘合剂磨损主导。 除了这些故障模式外,涂层WC微型磨机已破碎。 使用涂覆的WC微型研磨机的峰谷(P-TO-V)进料和正常力远高于Cermet Micro-Mills。 通过金属陶瓷和涂覆的WC微型磨机研磨的微槽实现了良好的表面粗糙度。 顶部毛刺首先使用Cermet Micro-Mills切割12mm的切削距离,但是在使用涂层WC微型磨机的整个加工过程中出现顶部毛刺。 这些结果表明,金属陶瓷微磨机更适合于微铣削TC4合金而不是涂覆的WC微型磨机。

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