首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Effects of cooling strategies and tool coatings on cutting forces and tooth frequency in high-speed down-milling of Inconel-718 using helical bull-nose solid carbide end mills
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Effects of cooling strategies and tool coatings on cutting forces and tooth frequency in high-speed down-milling of Inconel-718 using helical bull-nose solid carbide end mills

机译:冷却策略和工具涂层对螺旋牛鼻型固体碳化物终端磨机高速下铣削的切割力和齿频的影响

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This paper presents the results of experimental investigation of the effects of three cooling strategies (minimum quantity lubrication (MQL), cryogenic cooling using liquid nitrogen (LN2), and combined (MQL + LN2)) and three tool coatings (uncoated and AlTiN- and GMS(2)-coated) on cutting force components (F (x) , F (y) , F (z) ); the resultant cutting force, F (r) ; and cutter tooth frequency in peripheral high--speed end milling of Inconel-718 to improve machinability and reduce cost. All the experiments were conducted on a Cincinnati Milacron Sabre 750 vertical machining center (VMC), equipped with Acramatic 2100 CNC controller using uncoated and AlTiN- and GMS(2)-coated solid carbide bull-nose helical end mills of 12.7 mm (0.5 in.) diameter, and 0.762 mm (0.03 in.) corner radius. Each experiment consisted of eight passes, each pass of 76.2 mm (3 in.) cutting length. Axial and radial depths of cut, cutting speed, and material removal rate were kept constant for all experiments. The experimental results show that uncoated end mills generated lowest resultant cutting forces, whereas GMS(2)-coated end mills generated highest resultant cutting forces under all cooling strategies. MQL cooling strategy generated lowest resultant cutting forces, whereas LN2 cooling strategy generated highest resultant cutting forces for all end mill coatings. Using LN2 cooling strategy alone is not recommended for machining Inconel-718 due to high cutting forces and vibrations. Uncoated end mills under MQL cooling strategy generated the lowest cutting forces and are recommended for machining Inconel-718, whereas GMS(2)-coated end mills under LN2 cooling strategy generated highest cutting forces.
机译:本文介绍了三种冷却策略的效果的实验研究结果(最小量润滑(MQL),使用液氮(LN2)的低温冷却,以及组合(MQL + LN2))和三个工具涂层(未涂层和Altin-在切割力组分(F(x),f(y),f(z))上的gms(2)涂层);得到的切割力,f(r);和刀具牙齿频率在外围高速端铣削Inconel-718,以提高加工性和降低成本。所有实验都是在辛辛那提米兰龙架构(VMC)上进行的,配备有棘手的2100 CNC控制器,使用未涂覆和ALTIN和GMS(2) - 涂层固体碳化物牛鼻螺旋端铣刀为12.7毫米(0.5英寸。)直径,0.762毫米(0.03英寸)角半径。每个实验由八次通过,每次通过76.2毫米(3英寸)切割长度。对所有实验保持恒定的切割,切割速度和材料去除速率的轴向和径向深度。实验结果表明,未涂层的端铣刀产生最低的合成切割力,而GMS(2)涂层底磨机在所有冷却策略下产生最高的合成的切割力。 MQL冷却策略产生最低的合成切割力,而LN2冷却策略为所有终端磨涂层产生最高的最高的切割力。仅使用LN2冷却策略,不推荐用于加工Inconel-718由于高切削力和振动。在MQL冷却策略下的未涂层终端铣刀产生最低切割力,并建议加工Inconel-718,而LN2冷却策略下的GMS(2)涂层端铣刀产生最高的切割力。

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