首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part B. Journal of engineering manufacture >The effect of monolayer TiCN-, AlTiN-, TiAlN-and two layers TiCN plus TiN- and AlTiN plus TiN-coated cutting tools on tool wear, cutting force, surface roughness and chip morphology during high-speed milling of Ti6Al4V titanium alloy
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The effect of monolayer TiCN-, AlTiN-, TiAlN-and two layers TiCN plus TiN- and AlTiN plus TiN-coated cutting tools on tool wear, cutting force, surface roughness and chip morphology during high-speed milling of Ti6Al4V titanium alloy

机译:单层TICN - ,ALTIN,TiAln-and TiC的效果TiCn加锡和Altin加锡涂层切削工具对Ti6Al4V钛合金高速研磨过程中的工具磨损,切割力,表面粗糙度和芯片形态

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摘要

Tool coatings can improve the machinability performance of difficult-to-cut materials such as titanium alloys. Therefore, in the current work, high-speed milling of Ti6Al4V titanium alloy was carried out to determine the performance of various coated cutting tools. Five types of coated carbide inserts - monolayer TiCN, AlTiN, TiAlN and two layers TiCN+TiN and AlTiN+TiN, which were deposited by physical vapour deposition - were employed in the experiments. Tool wear, cutting force, surface roughness and chip morphology were evaluated and compared for different coated tools. To understand the tool wear modes and mechanisms, detailed scanning electron microscope analysis combined with energy dispersive X-ray of the worn inserts were conducted. Abrasion, adhesion, chipping and mechanical crack on flank face and coating delamination, adhesion and crater wear on rake face were observed during high-speed milling of Ti6Al4V titanium alloy. In terms of tool wear, the lowest value was obtained with TiCN-coated insert. It was also found that at the beginning of the machining pass TiAlN-coated insert and at the end of machining TiCN-coated insert gave the lowest cutting force and surface roughness values. No change in chip morphology was observed with different coated inserts.
机译:工具涂层可以提高诸如钛合金等难以切割材料的可加工性能。因此,在当前的工作中,进行了高速研磨的Ti6Al4V钛合金,以确定各种涂层切削刀具的性能。在实验中使用五种涂层碳化物插入物 - 单层TiCN,Altin,TiAln和两层TiCN +锡和Altin +锡,其在实验中使用。刀具磨损,切割力,表面粗糙度和芯片形态进行评估,并与不同的涂层工具进行比较。要了解工具磨损模式和机构,进行了详细的扫描电子显微镜分析,与磨损插入刀片的能量分散X射线相结合。在Ti6Al4V钛合金的高速研磨过程中,观察到侧面和涂层分层,粘附,粘接,粘附和火山口磨损的磨损,粘附,切削和机械裂缝。就工具磨损而言,用TiCN涂层插入物获得最低值。还发现,在加工通过TiAln涂覆的插入件和加工结束时,在加工的结束时,TiCN涂层插入物具有最低的切割力和表面粗糙度值。用不同的涂层插入物观察芯片形态没有变化。

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