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The effect of cutting speed and cutting tool geometry on machinability properties of nickel-base Inconel 718 super alloys

机译:切削速度和切削刀具几何形状对镍基Inconel 718超级合金的切削性能的影响

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摘要

The effects of cutting speed and cutting tool geometry on cutting forces are investigated in this study. For this purpose, nickel-base super alloy, Inconel 718, is machined with dry cutting conditions by using digital controlled computer lathe with ceramic cutting tools in two different geometries and three different material qualities. Metal removing process is carried out for four different cutting speeds (150 m/min, 200 m/min, 250 m/min, and 300 m/min), while a cutting depth of 2 mm and a feed rate of 0.20 mm/rev are kept constant. As a result of the experiments, the lowest main cutting force, which depends on tool geometry, is obtained as 672 N with KYON 2100 SNGN 120712 ceramic tool and the maximum cutting force is determined as 1346 N with the ceramic cutting tool having KYON 4300 RNGN 120700 geometry. Depending on the cutting speed, the lowest mam cutting force is recorded as 812 N at 250 m/min while the highest main cutting force is recorded as 955 N at 150 m/min. Plastic deformation, flank edge wear, notch and build-up edge are determined in high cutting speeds.
机译:在这项研究中研究了切削速度和切削刀具几何形状对切削力的影响。为此,通过使用数控陶瓷车床和具有两种不同几何形状和三种不同材料质量的陶瓷切削工具,在干切削条件下加工镍基超级合金Inconel 718。在四种不同的切削速度(150 m / min,200 m / min,250 m / min和300 m / min)下进行金属去除工艺,同时切削深度为2 mm,进给速度为0.20 mm / rev保持不变。根据实验结果,使用KYON 2100 SNGN 120712陶瓷刀具可获得的最小主切削力为672 N,使用具有KYON 4300 RNGN的陶瓷刀具可获得的最大切削力为1346 N 120700几何。根据切削速度的不同,最低切削力记录为250 m / min时为812 N,而最高主切削力记录为150 m / min时为955N。高切削速度决定了塑性变形,后刀面磨损,缺口和积屑瘤。

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