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High speed turning for hard material with PCBN inserts: tool wear analysis

机译:使用PCBN刀片对硬质材料进行高速车削:刀具磨损分析

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摘要

Because of tool wear, High Speed Machining (HSM) is rarely used for hard turning process and the cutting speeds are generally selected around 100 or 200 m/min. In this work, HSM is performed for hard turning of a 50 HRC hardened steel (AISI 4140/42CrMo4) with a PCBN tool by using high cutting speeds (300 and 400 m/min). The results show that HSM for hard turning can be acceptable for industrial application by providing very good surface roughness and keeping significant tool life. A qualitative correlation is also presented between the crater wear and the temperature distribution at the tool-chip interface, predicted by a thermomechanical model. Hank wear, crater wear and surface roughness are examined in order to choose an appropriate wear criterion. Investigations by SEM/EDS and white light interferometry highlight the importance of crater wear and help us to better understand the role of chemical/diffusion phenomena in wear mechanisms.
机译:由于工具磨损,高速加工(HSM)很少用于硬车削加工,切削速度通常选择在100或200 m / min左右。在这项工作中,通过使用高速切削速度(300和400 m / min),用PCBN工具对50 HRC淬硬钢(AISI 4140 / 42CrMo4)进行硬质合金加工。结果表明,用于硬车削的HSM通过提供非常好的表面粗糙度并保持显着的刀具寿命可以被工业应用接受。热力学模型预测,在弹坑磨损与工具-切屑界面的温度分布之间也存在定性相关性。为了选择合适的磨损标准,检查了汉克磨损,月牙洼磨损和表面粗糙度。 SEM / EDS和白光干涉仪的研究凸显了火山口磨损的重要性,并有助于我们更好地了解化学/扩散现象在磨损机理中的作用。

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