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Tool life and cutting forces on semi-finish milling of titanium alloy

机译:钛合金半精铣的刀具寿命和切削力

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摘要

Titanium alloys present excellent strength-to-weight ratio, high corrosion resistance and good hot mechanical properties, and so are key materials for aerospace applications. On the other hand, they present poor machinability because of their high chemical affinity to tool materials, low thermal conductivity, ability to keep good mechanical properties at high temperatures, and low Young's modulus. This last characteristic generates variation of chip thickness, which means high vibration levels, especially in machining processes involving interrupted cutting, like milling. This work aims to study how tool life and cutting forces are influenced by the tool entering angle and the tool-workpiece contact angle when semi-finish face milling Ti-6Al-4V alloy. Results show that using low entering angle extends tool life due to both, low radial load and very low frequencies associated to radial force. On the other hand, using low radial immersion angle impairs tool life, as tool insert enters the workpiece on adverse conditions.
机译:钛合金具有出色的强度重量比,高耐腐蚀性和良好的热机械性能,因此是航空航天应用的关键材料。另一方面,由于它们对工具材料的高化学亲和性,低导热性,在高温下保持良好机械性能的能力以及低杨氏模量,因此它们的可加工性差。最后一个特性会产生切屑厚度变化,这意味着较高的振动水平,尤其是在涉及间断切削(例如铣削)的加工过程中。这项工作旨在研究半精加工Ti-6Al-4V合金时,刀具的进入角和刀具与工件的接触角如何影响刀具的寿命和切削力。结果表明,由于低径向载荷和与径向力相关的极低频率,使用低进入角可延长刀具寿命。另一方面,使用低的径向浸入角会损害刀具寿命,因为刀具刀片会在不利条件下进入工件。

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