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Cutting Characteristics and Surface Integrity in Drilling of Powder Metallurgy Nickel-based Superalloy FGH97

机译:粉末冶金镍高超合金FGH97钻探特性及表面完整性

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FGH97 is a new generation of powder metallurgy superalloy, and it is finding its application in the industry. In this work, drilling experiments of FGH97 using coated carbide tool were conducted at different cutting speeds and feed rates, and FEM simulationsunder the same drilling conditions were also done using Advantedge. The results revealed that FGH97 should be drilled at a cutting speed of less than 20 m/min. The cutting forceand cutting temperature increased with the increase of cutting speed and feed rate. Surface roughness of drilling of FGH97 was affected mainly by cutting speed, rather than feed rate. And high cutting temperature wasbenefitial for reducing roughness. Work hardening was severe when drilling FGH97, and low cutting speed was beneficial to increasework hardening.
机译:FGH97是一代新一代粉末冶金超合金,它在行业中找到了应用。在这项工作中,使用涂层碳化物工具的FGH97钻探实验以不同的切割速度和进料速率进行,并且使用Advantedge也完成了相同的钻井条件下的FEM模拟。结果显示,FGH97应以小于20米/分钟的切削速度钻孔。切割的切削温度随着切削速度和进料速率的增加而增加。 FGH97钻孔的表面粗糙度主要通过切割速度而不是进料速率影响。和高切削温度是降低粗糙度的纤维义。钻孔FGH97时,工作硬化很严重,低切割速度有利于增加硬化。

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