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Experimental investigation of surface roughness in high-speed micro end milling of near alpha titanium alloy

机译:近α钛合金高速微端研磨中表面粗糙度的实验研究

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摘要

Super alloys are widely used in many applications such as aerospace, automotive, biomedical, marine, mining and oil industries. In high-speed micro end milling (HSMEM) of super alloys, the proper selection of cutting tool is necessary to achieve good surface quality without burrs. Surface roughness characterisation is crucial on the work materials to achieve the desired production rate in limited time and at low cost. In this research work, surface roughness characterisation was investigated in order to opt for the better possible tool for machining Near Alpha Titanium Alloy Grade-12 under feasible conditions. The influence of machining parameters i.e. cutting speed, feed and depth of cut on surface roughness was investigated in the present work. Experiments were conducted under dry cutting conditions using Uncoated, PVD Coated TiAlN & AlTiN tungsten carbide tools. It was observed that machining with uncoated tungsten carbide tools generates less surface roughness on near alpha titanium alloy.
机译:超级合金广泛应用于许多应用,如航空航天,汽车,生物医学,海洋,采矿和石油产业。在超优合金的高速微端研磨(HSMEM)中,需要正确选择切削工具,以实现无毛刺的良好表面质量。表面粗糙度表征对于工作材料至关重要,以在有限的时间内和低成本实现所需的生产率。在该研究工作中,研究了表面粗糙度表征,以选择在可行条件下在α钛合金级-1附近加工的更好的加工工具。在本作工作中研究了加工参数的影响。使用未涂覆的PVD涂层TiAln和Altin碳化钨工具在干切削条件下进行实验。观察到,用未涂覆的碳化钨工具加工在α钛合金附近产生更少的表面粗糙度。

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