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Experimental investigation of top burr formation in high-speed micro-end milling of titanium alloy

机译:高速微端铣削钛合金顶层毛刺形成的实验研究

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摘要

Superalloys with burr-free parts are most preferably used in biomedical, aerospace, marine and automotive applications. In order to reduce the global pollution content, industries strive to execute stringent green manufacturing technologies. There is a need to investigate the different available tools in high-speed micro-milling process to achieve desired burr free with good surface finish on super alloys without using traditional coolants. In machining of titanium and its alloys, because of low thermal conductivity and reactivity with tool materials instigate the burr formation on work material and lowers the tool performance. The main objective of this article is to investigate the top burr formation in high-speed micro-end milling of alpha + beta-titanium alloy-grade 23 ELI (Ti-6Al-4V) under dry cutting conditions using Uncoated and physical vapor deposition coated AlTiN, TiAlN tungsten carbide end mills. Machining performance of the three cutting tools was compared. From the comparison of cutting tools for machining titanium alloy-grade 23, it is found that coated TiAlN tools produce less burr formation than coated AlTiN and uncoated tungsten carbide tools.
机译:具有无脉冲部件的高温合金最优选用于生物医学,航空航天,海洋和汽车应用。为了减少全球污染内容,行业力争执行严格的绿色制造技术。需要研究高速微型铣削过程中的不同可用工具,以实现所需的毛刺,在超优合金上无需使用传统的冷却剂。在加工钛及其合金时,由于低导热率和工具材料的反应性,造成工具材料上的毛刺形成并降低工具性能。本文的主要目的是在使用未涂覆的和物理气相沉积的干切削条件下研究高速微端研磨的高速微端铣削α+β-钛合金-23 Eli(Ti-6Al-4V)的顶部毛刺形成Altin,Tialn钨碳化物端铣刀。比较了三种切割工具的加工性能。从用于加工钛合金23级的切削工具的比较,发现涂层的TiAln工具产生比涂覆的Altin和未涂覆的碳化钨工具更少的毛刺形成。

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