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The effect of cryogenic cooling and minimum quantity lubrication on end milling of titanium alloy Ti-6Al-4V

机译:低温冷却和少量润滑对钛合金Ti-6Al-4V立铣刀的影响

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摘要

The cooling down of cutting temperature in machining is very important for the improvement of tool life, especially when dealing with work materials that have low thermal conductivity such as titanium alloy. In this study designed to investigate the machining performance of a variety of cooling methods, cryogenic, Minimum quantity lubrication (MQL), and flood cooling are performed on solid end milling of titanium alloy, Ti-6Al-4V. In particular, the effect of internal and external spray methods on cryogenic machining is analyzed with a specially designed liquid nitrogen spraying system by evaluating tool wear and cutting force at cutting conditions. The cutting force is also analyzed for tool breakage detection. As a result, the combination of MQL and internal cryogenic cooling improves tool life by up to 32% compared to conventional cooling methods. The cutting force is also reduced significantly by this combination of cooling and lubrication strategy of side end milling.
机译:在加工中降低切削温度对于延长刀具寿命非常重要,特别是在处理导热系数低的工作材料(例如钛合金)时。本研究旨在研究各种冷却方法的加工性能,在钛合金Ti-6Al-4V的固态立铣刀上进行低温,最小量润滑(MQL)和溢流冷却。特别是,通过专门设计的液氮喷涂系统,通过评估切削条件下的刀具磨损和切削力,分析了内部和外部喷涂方法对低温加工的影响。还分析切削力以检测刀具破损。结果,与传统的冷却方法相比,MQL和内部低温冷却的组合将工具寿命提高了32%。侧面铣削的冷却和润滑策略相结合,切削力也大大降低。

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