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Comparative study on turning Cl and CGI using silicon nitride cutting tools

机译:使用氮化硅切削刀具车削Cl和CGI的比较研究

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There has been a great interest for improving the machining of cast iron materials in the automotive and other industries. Comparative studies for tool used to machine grey cast iron (CI) and compacted graphite iron (CGI) on dry machining were also performed in order to find out why in this case the tool lifetime is not significantly higher. However the machining these materials while considering turning with the traditional high-speed steel and carbide cutting tools present any disadvantages. One of these disadvantages is that all the traditional machining processes involve the cooling fluid to remove the heat generated on workpiece due to friction during cutting. This paper present a new generation of ceramic cutting tool exhibiting improved properties and important advances in machining CI and CGI. The tool performance was analyzed in function of flank wear, temperature and roughness, while can be observed that main effects were found for tool wear, were abrasion to CI and inter-diffusion of constituting elements between tool and CGI, causing crater. However the difference in tool lifetime can be explained by the formation of a MnS layer on the tool surface in the case of grey CI. This layer is missing in the case of CGI.
机译:在汽车和其他行业中,对改善铸铁材料的机械加工一直有极大的兴趣。还进行了对干法加工灰口铸铁(CI)和压实石墨铁(CGI)所用工具的比较研究,以查明为什么在这种情况下工具的寿命没有明显提高。但是,在考虑使用传统的高速钢和硬质合金切削刀具进行车削时对这些材料进行机械加工会带来任何不利条件。这些缺点之一是,所有传统的机加工过程都涉及冷却液,以消除由于切削过程中的摩擦而在工件上产生的热量。本文介绍了新一代的陶瓷切削刀具,它们在加工CI和CGI方面表现出改进的性能和重要的进展。分析了刀具性能的侧面磨损,温度和粗糙度的函数,同时可以发现,发现刀具磨损的主要影响是CI的磨损以及组成元素在刀具和CGI之间的相互扩散,从而导致缩孔。但是,在使用灰色CI的情况下,可以通过在刀具表面形成MnS层来解释刀具寿命的差异。对于CGI,缺少此层。

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