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Machinability and surface integrity of RR1000 nickel based superalloy

机译:RR1000镍基高温合金的机械加工性和表面完整性

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Alloy development for gas turbine components has produced materials able to maintain strength and integrity at operating temperatures up to ~1050℃. Next-generation RR1000 nickel-based superalloy reflects this philosophy, albeit at the expense of machinability. Experimental data for drilling showed flank wear when operating at 45 m/min to be <100 μm for a distance cut of 1800 mm (150 holes). Thrust forces measured 1600-1800 N. Re-deposited material on hole surfaces and drag/distortion was evident on cross-sectional micrographs. Roughness of end-milled specimens was <0.8 μm Ra with minimal damage using new tools, however significant burring/increased microhardness (~150 HK_(0.05)) and white layer formation occurred when employing worn tools.
机译:用于燃气轮机部件的合金开发产生了能够在高达1050℃的工作温度下保持强度和完整性的材料。下一代RR1000镍基高温合金体现了这一理念,尽管牺牲了可加工性。钻孔实验数据显示,对于1800毫米(150孔)的切削距离,以45 m / min的速度运行时侧面磨损小于100μm。推力测得为1600-1800N。孔表面上再沉积的材料和阻力/变形在横截面显微照片上很明显。端铣削试样的粗糙度<0.8μmRa,使用新工具损伤最小,但是使用磨损的工具时会出现明显的毛刺/增加的显微硬度(〜150 HK_(0.05))和白层形成。

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