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The effect of inclusion composition on tool wear in hard part turning using PCBN cutting tools

机译:PCBN切削刀具中夹杂物成分对硬质零件车削中刀具磨损的影响

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摘要

This work reports on hard part turning of carburizing steels using a PCBN cutting tool in fine machining. Emphasis is on the link between composition of the inclusions in work material and wear mechanisms of the cutting tool. A Ca-treated machinability improved 20NiCrMo steel was included together with three other carburizing steels with different inclusion characteristics. Machining tests were conducted to examine cutting tool life and its balance between excessive flank wear or crater wear. The wear mechanisms were examined using a scanning electron microscope (SEM) equipped with an energy dispersive X-ray spectrometer (EDS) and a secondary electron (SE) detector. The longest tool life was obtained when cutting the Ca-treated steel. The improved machinability is linked to the deposition of complex (Mn,Ca)S and (Ca,Al)(O,S) protective slag layers that form on the rake face of the cutting tool during machining. Cutting in this steel also resulted in a typical ridge formation in the tool edge crater. Transfer of workpiece material to the rake face crater is characteristic in hard part turning of steel with high cleanliness. This is suggested to be related to the lack of the sulphides that lubricate conventional machinability treated steels, and that the crater wear of low-sulphur steel is more pronounced than for steels with higher sulphur content.
机译:这项工作报道了在精密加工中使用PCBN切削刀具对渗碳钢进行硬质零件车削的情况。重点是工作材料中夹杂物的成分与切削工具的磨损机理之间的联系。将经过Ca处理的可加工性得到改善的20NiCrMo钢与其他三种具有不同夹杂特性的渗碳钢一起使用。进行了机加工测试,以检查切削刀具的寿命及其在过度的侧面磨损或月牙洼磨损之间的平衡。使用配备有能量色散X射线光谱仪(EDS)和二次电子(SE)检测器的扫描电子显微镜(SEM)检查磨损机理。切割经Ca处理的钢时,可获得最长的刀具寿命。机加工性能的提高与在加工过程中在切削刀具前刀面上形成的复合(Mn,Ca)S和(Ca,Al)(O,S)保护渣层的沉积有关。用这种钢进行切割还会在刀具边缘的陨石坑中形成典型的棱纹。将工件材料转移到前刀面凹坑是高硬度钢的硬质零件车削的特征。认为这与缺乏润滑常规可机加工性的钢的硫化物有关,并且与高硫钢相比,低硫钢的月牙洼磨损更为明显。

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