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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Mechanisms and characteristics of direct cutting of tungsten carbide using a diamond-coated carbide end mill
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Mechanisms and characteristics of direct cutting of tungsten carbide using a diamond-coated carbide end mill

机译:使用金刚石涂层硬质合金立铣刀直接切削碳化钨的机理和特性

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This paper addresses the cutting mechanisms of cemented carbide using a diamond-coated carbide end mill at ultrasmall feed rates. The tool wear behavior, cutting force, and form and surface integrity of the machined groove were experimentally investigated. In addition, the cutting edge temperature, finished surface, and influence of feed rate on tool durability were investigated to determine the cutting characteristics. A large flaking of the coating film on the rake face occurred immediately after the cutting onset, and a sharp cutting edge evolved on the ridgeline of the section of the coating film that remained on the flank face. The cutting force decreased, and the removal volume increased because of the flaking of the coating film on the rake face, which resulted in the evolution of the sharp cutting edge. The temperature of the cutting edge increased with increasing the tool's speed of revolution, similar to the case of hardened die steel materials, and reached 440-560 A degrees C. No damaged layer was observed on the finished surface layer, as confirmed by compositional mapping of a section of the preliminary and finished surfaces. The durability of the cutting tool deteriorated significantly at feed rates higher than the cross-sectional thickness of the coating film. High wear resistance and cutting performance can be achieved by setting the feed rate to ultrasmall values, less than the thickness of the coating film.
机译:本文介绍了使用金刚石涂层硬质合金立铣刀以超小进给速率切削硬质合金的机理。实验研究了刀具的磨损行为,切削力以及加工槽的形状和表面完整性。此外,还研究了切削刃温度,精加工表面以及进给速度对刀具耐久性的影响,以确定切削性能。切削开始后立即在前刀面上产生大量的覆膜剥落,并且在残留在侧面的覆膜截面的棱线上形成了锋利的切削刃。由于前刀面上的覆膜剥落,切削力降低,去除量增加,这导致了锋利的切削刃的产生。切削刃的温度随着工具旋转速度的增加而增加,类似于硬化模具钢的情况,达到440-560 A摄氏度。通过成分图确认,在成品表面层上未观察到损坏的层。初步和完成表面的一部分。在进给速度高于涂膜横截面厚度的情况下,切削工具的耐用性显着下降。通过将进给速度设置为小于涂膜厚度的极小值,可以实现高耐磨性和切削性能。

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