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Burr Formation and Surface Characteristics in Micro-End Milling of Titanium Alloys

机译:钛合金微端铣削的毛刺形成和表面特征

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Titanium base alloys are used for aircraft structures, turbine blades and medical implants. The surface of these parts can be functionalized by micro-structuring e.g. to get a more energy efficient turbine or to get a better bio-compatibility for medical implants. Micro-end milling with end mills down to 300μm is already efficient and reliable for microstructuring ductile materials. We developed and manufactured carbide micro end mills with a smallest diameter of 7μm to improve the spectrum of functional structures. This paper describes micro end milling experiments of the difficult to machine titanium alloys Ti-6Al-4V and Ti-6Al-7Nb with 48μm micro-end mills. Large areas are machined to observe the micro structure on the surface and the influence on surface quality. The burr formations in slot milling is observed and compared to still existing models. Up milling and down milling at the sidewalls were compared.
机译:钛基合金用于飞机结构,涡轮叶片和医疗植入物。这些部件的表面可以通过微结构化官能化。为了获得更节能的涡轮机或为医疗植入物提供更好的生物兼容性。微端铣削末端铣刀下至300μm已经有效可靠,微观结构延性材料。我们开发和制造了具有最小直径为7μm的碳化物微端铣刀,以改善功能性结构的光谱。本文介绍了具有48μm微内铣刀的难以机钛合金Ti-6Al-4V和Ti-6Al-7NB的微端研磨实验。大面积加工,观察表面上的微结构和对表面质量的影响。观察到槽铣的毛刺形成,并与仍然存在的模型进行比较。比较侧壁上的铣削和铣削铣削。

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