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Influence of cutting speed on surface integrity for powder metallurgy nickel-based superalloy FGH95

机译:切削速度对粉末冶金镍基高温合金FGH95表面完整性的影响

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摘要

Powder metallurgy (PM) nickel-based superalloy FGH95 has been widely used for components, which requires the greatest service performance. The surface integrity is becoming more and more important in order to satisfy the increasing service demands. However, the machined surface of FGH95 is easily damaged due to its poor machinability. The purpose of this paper is to investigate the effects of dry milling process parameters on the surface integrity of FGH95. Experiments were conducted on a CNC machining center under different cutting speeds. The machined surface is evaluated in terms of surface roughness, microhardness and white layer. Experiments results show milled surface integrity of FGH95 is sensitivity to the cutting speeds. The machined surface roughness decreases with increase of the cutting speed, but with further increase of cutting speed between 80 m/min to 100 m/min an increase in surface roughness appears. For microhardness, it can be seen that the machined workpiece surface hardens seriously. It can also draw the conclusion that cutting speed has the marginal effect on the white layer thickness generated in the machined subsurface.
机译:粉末冶金(PM)镍基高温合金FGH95已广泛用于组件,要求最高的服务性能。为了满足日益增长的服务需求,表面完整性变得越来越重要。但是,由于FGH95的可加工性差,因此很容易损坏其加工表面。本文的目的是研究干磨工艺参数对FGH95表面完整性的影响。实验是在CNC加工中心上以不同的切削速度进行的。根据表面粗糙度,显微硬度和白层评估加工的表面。实验结果表明,FGH95的铣削表面完整性对切削速度敏感。加工的表面粗糙度随着切削速度的增加而降低,但是随着切削速度在80 m / min至100 m / min之间的进一步增加,表面粗糙度出现增加。对于显微硬度,可以看出加工的工件表面严重硬化。还可以得出这样的结论:切削速度对在机加工次表面中产生的白层厚度具有边际影响。

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