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Tool Wear of PVD Coated Carbide Tool When Finish Turning Inconel 718 under High Speed Machining

机译:在高速加工下精加工Inconel 718时,PVD涂层硬质合金刀具的刀具磨损

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This paper reports the results of an experimental works, where Inconel 718, a highly corrosive resistant, nickel-based super alloy, was finish-turning under high speed conditions. The machining processes were carried out at three different cutting conditions (DRY, MQL 50 ml/h and MQL 100 ml/h), three levels of cutting speed (Vc=90, 120 and 150 m/min), two levels of feed rate (f=0.10 and 0.15 mm/rev) and two levels of cutting depth (d=0.30 and 0.50 mm). The tool wear and flank wear progression were monitored, measured and recorded progressively at various time intervals. The experiments indicated that MQL condition performs better than dry condition in term of tool life. Most of the tool failures during machining were due to gradual failure where abrasive and notching wear on the flank face was the dominant followed by, fracture on the flank edge and nose radius. Tool failure due to crater wear was not significant. Wear mechanism such as abrasive and adhesion were observed on the flank face and diffusion wear was observed on the rake face.
机译:本文报道了一项实验工作的结果,其中Inconel 718是一种高度耐腐蚀的镍基超级合金,已在高速条件下进行了车削。加工过程在三种不同的切削条件(DRY,MQL 50 ml / h和MQL 100 ml / h),三种切削速度(Vc = 90、120和150 m / min),两种进给速度下进行(f = 0.10和0.15 mm / rev)和两个切削深度等级(d = 0.30和0.50 mm)。在不同的时间间隔逐步监测,测量和记录刀具的磨损和侧面磨损的进程。实验表明,就刀具寿命而言,MQL条件比干燥条件表现更好。加工过程中的大多数刀具故障是由于逐渐失效而引起的,其中侧面的磨料和缺口磨损占主导地位,随后是侧面边缘和刀尖半径的断裂。因月牙洼磨损而导致的工具故障不明显。在侧面观察到磨损机理,例如磨蚀和粘附,在前刀面上观察到扩散磨损。

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