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Effects of extended punching on wear of the WC/Co micropunch and the punched microholes

机译:延伸冲孔对WC / Co微冲孔和冲孔微孔磨损的影响

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The wear of the tungsten carbide–cobalt (WC/Co) micropunch (150 μm diameter) and its effects on the microhole morphology in various periods of processing were investigated. Punching was performed using titanium as substrate. Effects of the punch number on the weight loss and the surface morphology of the micropunch had been studied by confocal microscopy, scanning electron microscopy, energy-dispersive X-ray analysis, etc. The morphology of the punched microholes had also been investigated correspondingly. Results showed that the micropunch underwent distinct wear loss during the initial period of micropunching, which was linked to loss in Co. The diameter of the punched microholes was changed accordingly and some debris on the surface of the hole was observed. Then, the punch entered a period of quasi-stability: there was very little wear loss and the diameter of the punched holes was rather stable. The wear rate of the micropunch increased remarkably when the punch number exceeded about 1,500. The wear loss was due to loss in both Co and WC. Large bulk debris was attached to the punched hole, and the diameter of microholes was changed correspondingly. Further increase in the punch number showed more drastic punch wear, debris attachment, and hole's diameter reduction. The dominant was then mainly in WC.
机译:研究了碳化钨-钴(WC / Co)微冲头(直径150μm)的磨损及其在不同加工阶段对微孔形态的影响。使用钛作为基材进行冲压。通过共聚焦显微镜,扫描电子显微镜,能量色散X射线分析等方法研究了冲头数量对微冲头的重量损失和表面形态的影响。还对冲孔的形态进行了相应的研究。结果表明,在冲孔初期,微冲经历了明显的磨损损失,这与Co的损失有关。冲孔的直径相应地发生了变化,并且在孔的表面观察到一些碎屑。然后,冲头进入准稳定期:几乎没有磨损损失,并且冲头的直径相当稳定。当冲头数量超过约1,500时,微冲头的磨损率显着增加。磨损损失是由于Co和WC的损失造成的。大块杂物附着在穿孔上,相应地改变了微孔的直径。冲头数量的进一步增加显示出更大的冲头磨损,碎屑附着和孔的直径减小。当时主要是在厕所。

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