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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Wear mechanisms of uncoated and coated carbide tools when machining Ti6Al4V using LN2 and cooled N2
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Wear mechanisms of uncoated and coated carbide tools when machining Ti6Al4V using LN2 and cooled N2

机译:使用LN2加工Ti6Al4V时的未涂层和涂层硬质合金工具的磨损机制,并冷却N2

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One of the main challenges of the manufacturing industry is to optimise the cutting tool life in order to increase both the process productivity and the product surface quality in machining operations. Several innovative strategies were developed and tested as function of both the workpiece material and the peculiar machining operation, being the most interesting in case of difficult-to-cut alloys, the use of low-temperature cutting fluids that would be able to inhibit the thermally activated wear mechanisms responsible of the cutting edge geometrical alterations. In this context, the aim of the paper is to investigate the effect of cryogenic cooling technologies based on the use of liquid nitrogen (LN2) and gaseous nitrogen (N2) cooled at - 100 A degrees C on the tool wear when using uncoated and coated cemented carbide inserts in semi-finishing turning of the Ti6Al4V titanium alloy. Four commercially available insert grades commonly used in machining difficult-to-cut alloys were tested using the cutting parameters recommended by the tool manufacturer. The investigation combined scanning electron microscopy and optical profiler analyses to efficiently define and quantify the main tool wear mechanisms. The study proved that the innovative technology based on cooled N2, regardless of the adopted insert grade, determined the best results in terms of tool life improvement since it simultaneously inhibited the cratering phenomenon onto the tool rake face and produced the lowest flank wear with respect to both the dry cutting, wet strategy, and LN2 cooling cases. It was also proved that the best results were obtained for the uncoated insert when using cooled N2.
机译:制造业的主要挑战之一是优化切削刀具寿命,以提高加工操作中的过程生产力和产品表面质量。通过工件材料和特殊加工操作的功能开发和测试了几种创新策略,是在难以切割的合金的情况下最有趣的,使用低温切削液将能够抑制热敏负责切削刃几何改变的活性磨损机制。在这种情况下,本文的目的是探讨低温冷却技术的基于使用液氮(LN2)和气态氮(N2)在使用未涂覆并涂覆时在刀具磨损时冷却的气态氮(N2)硬质合金插入Ti6Al4V钛合金的半整理转动。使用工具制造商推荐的切割参数测试常用于加工难以切割合金的四种可商购的插入等级。调查组合扫描电子显微镜和光学分析器分析以有效地定义和量化主刀具磨损机制。该研究证明,基于冷却N2的创新技术,无论采用的插入等级如何,都确定了刀具寿命改善的最佳结果,因为它同时抑制了刀具耙面上的陨石坑现象,并产生了最低的侧面磨损干切削,湿策略和LN2冷却案例。还证实,在使用冷却的N 2时,在未涂覆的插入物中获得了最佳结果。

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