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Tool life and tool wear in taper turning of a nickel-based superalloy

机译:镍基高温合金锥度车削中的刀具寿命和刀具磨损

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Due to their high ductility and strain hardening coefficient, high mechanical strength and hardness even in high temperatures, chemical affinity with almost every tool material, and low thermal conductivity, nickel-based superalloys are known to present very low machinability. Some researchers point out that taper turning may prolong tool life as ramping may distribute tool wear along tool edge, avoiding the presence of notch wear in the end of the depth of cut, which usually occurs in the tools used in turning of these alloys. In this work, tool life, tool wear, and resulting surface roughness of Inconel 625 were evaluated for taper turning in comparison with straight turning. In taper turning, double feed was tested to compensate metal removal rate reduction (since in this operation, the feed length is doubled), and in order to avoid roughness increase caused by the higher feed, a wiper tool was used. Results show that taper turning was not successful in terms of tool life, although the furrowing mechanism of the tool coating caused by the hard burr formed, that leads to notch wear, was avoided. This mechanism was replaced by strong adhesion that promoted rapid and wide flank wear. Feed increase has also produced microchipping due to the extra load on the tool edge. Although wiper tool had provided better finishing when high feed was employed, conventional tool seems to be more suitable for tapering considering tool life.
机译:由于镍基高温合金具有很高的延展性和应变硬化系数,即使在高温下也具有很高的机械强度和硬度,与几乎每种工具材料都具有化学亲和力,并且导热率低,因此已知镍基高温合金的切削性非常低。一些研究人员指出,锥度车削可能会延长刀具寿命,因为斜面加工可能会沿刀具边缘分布刀具磨损,从而避免了在切削深度结束时出现缺口磨损,这种情况通常发生在用于车削这些合金的刀具中。在这项工作中,评估了Inconel 625的锥度车削与直线车削的刀具寿命,刀具磨损以及所得的表面粗糙度。在锥形车削中,对双进给进行了测试以补偿金属去除率的降低(因为在此操作中,进给长度增加了一倍),并且为了避免由于进给量较高而引起的粗糙度增加,使用了刮水器工具。结果表明,尽管避免了由形成的硬毛刺引起的导致缺口磨损的工具涂层的皱沟机制,但就工具寿命而言,锥度车削并不成功。该机制被促进快速而宽泛的后刀面磨损的强粘合力所取代。由于刀具边缘的额外负载,进给量的增加也产生了微屑。尽管使用高进给量时刮水器工具具有更好的精加工效果,但考虑到工具的使用寿命,传统工具似乎更适合于锥度加工。

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