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Characterization of tool wear when machining alloy 718 with high-pressure cooling using conventional and surface-modified WC-Co tools

机译:使用常规和表面改性WC-CO工具加工合金718加工合金718时刀具磨损的特征

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摘要

Coolant supplied by high pressure into the cutting zone has shown the lower thermal loads on the tool when machining difficult-to-cut materials as the Alloy 718. In this study, we investigate how the combination of high-pressure cooling and tool-surface modifications can lead to further improvements regarding tool life. The general approach is to enhance the coolant-tool interaction by increasing the contact area. Therefore, we machined cooling features into flank and rake faces of commercially available cemented tungsten carbide inserts. In this way, the surface area was increased by similar to 12%. After the cutting tests, the tools were analyzed by scanning electron microscopy combined with energy-dispersive X-ray spectroscopy. Compared with conventional tools, the tool modifications reduced the flank wear by 45% for the investigated cutting parameters. Furthermore, we were able to significantly increase the cutting speed and feed rate without failure of the tool. The investigated surface modifications have great potential to enhance the productivity of metal cutting processes.
机译:高压进入切割区的冷却剂在加工难以切割的材料作为合金718时,在工具上显示出较低的热负荷。在这项研究中,我们研究了高压冷却和工具表面改造的结合如何可以导致刀具生活进一步改进。一般方法是通过增加接触面积来增强冷却剂刀具相互作用。因此,我们将冷却功能加工成商业上可获得的碳化碳化钨插入物的侧翼和耙面。以这种方式,表面积增加与12%增加。在切割测试之后,通过扫描电子显微镜与能量分散X射线光谱进行分析该工具。与常规工具相比,工具改性将侧面磨损降低45%,用于研究的切削参数。此外,我们能够显着增加切割速度和进料速率而不会发生工具。研究的表面修饰具有巨大的潜力,可以提高金属切削过程的生产率。

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