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Generation of Wear Protective Layer in High Speed Turning of Gray Cast Iron containing Aluminium and Magnesium

机译:含铝和镁的灰铸铁高速车削过程中磨损保护层的产生

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摘要

This paper focuses on the influence of difference of tool materials on generation of wear protective layer when turning gray cast iron containing Al and Mg. In this experiment, the gray cast iron to which small quantities of Al and Mg was added were cut with cermet, P grade carbide (P10), silicon nitride ceramics (Si_3N_4), titanium nitride (TiN) coated carbide and K grade carbide (K10) at high speed. In turning gray cast iron containing Al and Mg with cermet, the tool wear was significantly reduced compared to that resulting from the cutting of conventional gray cast iron. Further, the protective layer consisting of nonmetallic inclusions in the work material was formed on the tool surface. In addition to cermet, this layer was formed on tool surface of Si_3N_4 and TiN coated carbide. The elements of Al and Mg added to the work materials were detected in the layers formed on these tool surfaces as well as cermet. The inhibiting effect on tool wear was also caused when turning with P10. However, P10 had much greater wear than cermet. On the other hand, in the case of turning with K10, the effect reducing wear with the addition of Al and Mg was not caused. The wear increased as cutting speed increased regardless of work materials.
机译:本文着眼于在车削含Al和Mg的灰口铸铁时,工具材料的不同对磨损保护层生成的影响。在该实验中,用金属陶瓷,P级碳化物(P10),氮化硅陶瓷(Si_3N_4),氮化钛(TiN)涂层碳化物和K级碳化物(K10)切割添加了少量Al和Mg的灰铸铁。 )。与使用常规金属灰铸铁进行切削所产生的磨损相比,在将含有Al和Mg的灰铸铁与金属陶瓷一起车削时,刀具磨损显着降低。此外,在工具表面上形成由工作材料中的非金属夹杂物组成的保护层。除金属陶瓷外,该层还形成在Si_3N_4和TiN涂层硬质合金的刀具表面上。在这些工具表面以及金属陶瓷上形成的层中检测到添加到工作材料中的Al和Mg元素。用P10车削时也产生了对刀具磨损的抑制作用。但是,P10的磨损比金属陶瓷大得多。另一方面,在用K10车削的情况下,没有产生通过添加Al和Mg来降低磨损的效果。磨损随切割速度的增加而增加,与工作材料无关。

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