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Process behaviour of micro-textured CVD diamond thick film cutting tools during turning of Ti-6Al-4V

机译:TI-6AL-4V转动过程中微纹理CVD金刚石厚膜切割工具的过程行为

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Currently, an efficient machining of high-performance materials, such as titanium alloy Ti-6Al-4V, represents a challenge in manufacturing. For the reduction of high cutting temperatures, micro-textured CVD diamond thick film cutting tools establish new potentials regarding the process productivity. The application of micro-textures allows a reduced contact area between chip and tool in order to decrease the generation of heat. Furthermore, a direct application of lubricant into the cutting zone is possible. The present study investigates the influence of micro-textured CVD diamond thick film cutting tools on the resulting process forces, chip formation as well as maximum cutting volumes during turning process. Part of the investigations was a variation of micro-texture trajectory with micro-textures parallel to the major cutting edge, perpendicular to the bisector of corner angle ε and curved along the cutting edge. The analyses showed that both positive and negative effects occur using micro-textures. The forces can be reduced by 14 % whereas the use of micro-textures leads to higher feed forcesFfby 21 % as well as an additional notch effect in the micro-texture bottom.
机译:目前,高性能材料的高效加工,如钛合金Ti-6Al-4V,代表了制造业的挑战。为了减少高切削温度,微纹理CVD金刚石厚膜切削工具建立了关于工艺生产率的新电位。微纹理的应用允许芯片和工具之间的减小的接触面积,以减小热量的产生。此外,可以将润滑剂直接施加到切割区中。本研究研究了微织纹理CVD金刚石厚膜切削工具对所得工艺力,芯片形成以及转动过程中的最大切割体积的影响。部分调查是微纹理轨迹的变化,微纹理与主要切削刃平行的微纹理,垂直于角角ε的分块并沿着切削刃弯曲。分析表明,使用微纹理发生正面和负面影响。这些力可以减少14%,而微纹理的使用导致更高的饲料强度21%以及微纹理底部的额外缺口效果。

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