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Effect of Temperature on Tool Wear During Milling of Ti64

机译:温度对TI64研磨过程中工具磨损的影响

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摘要

In recent years, the development of new, increasingly resistant materials limit machining productivity. This observation is especially true for titanium alloys. The state-of-the-art shows that one of the phenomena responsible for tool wear is temperature. The high temperature is explained by the low thermal conductivity of the alloy and its high mechanical properties. Consequently, high temperatures generated when cutting speeds are increasing lead to very rapid wear phenomena. However in milling, the period during which the insert is not in contact with the material may allow it to cool but its effect is not clearly established. In order to correlate tool wear and cutting temperatures in milling, an experimental bench has been developed. In turning and therefore with a fixed tool, the milling conditions are recreated and allow to measure the temperatures on the cutting face. Two parameters were tested: (i) radial depth, which influences the tooth stress time, and (ii) the cutting speed, which is the fundamental parameter of the cutting temperature. Experimentally, it appears that increasing radial engagement and cutting speed reduces tool life and increases temperatures. However, the phenomenological analysis is not immediate. The relationship between these phenomena is based on a heat balance of the cutting process. The use of an infrared (IR) camera in this problem and a specific analysis method allow observing the temperature gradients on the cutting face making the analysis more robust compared to the thermocouple technic. It thus appears that the increase in radial engagement leads to a higher tool temperature, but the analyses show above all a higher temperature within the insert and therefore more difficult to evacuate.
机译:近年来,新的、越来越耐磨的材料的开发限制了加工生产率。这种观察对钛合金尤其如此。最新研究表明,导致刀具磨损的现象之一是温度。高温的原因是合金的低导热性和高机械性能。因此,切削速度增加时产生的高温会导致非常迅速的磨损现象。然而,在铣削过程中,镶块不与材料接触的时间可能会使其冷却,但其效果尚未明确确定。为了将铣削过程中刀具磨损与切削温度关联起来,开发了一个实验台。在车削过程中,因此使用固定刀具时,铣削条件会被重新创建,并允许测量切削面上的温度。测试了两个参数:(i)径向深度(影响齿应力时间)和(ii)切削速度(切削温度的基本参数)。从实验上看,增加径向啮合和切削速度似乎会缩短刀具寿命并提高温度。然而,现象学分析并非立竿见影。这些现象之间的关系是基于切削过程的热平衡。在该问题中使用红外(IR)摄像机和特定的分析方法,可以观察切割面上的温度梯度,使分析比热电偶技术更可靠。因此,径向啮合的增加似乎会导致较高的刀具温度,但分析表明,最重要的是,镶块内的温度较高,因此更难排出。

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