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Influence of the coolant nozzle orientation and size on the tool temperature under high-pressure coolant supply using an analogy test bench

机译:使用类比试验台,冷却剂喷嘴取向和尺寸对高压冷却剂供应下工具温度的影响

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摘要

In many examinations, high-pressure coolant supply showed its’ great potential to improve the productivity when machining difficult to cut materials. However, most examinations regarding the supply of metalworking fluid at elevated pressure were performed in turning. Accordingly, a profound knowledge of the fundamental mechanisms of the focused high-pressure coolant supply in milling is vital for an optimal process and tool design and mostly still missing. However, especially the sensor-based examination of the cooling effect on the tool temperature in milling under coolant supply is highly challenging, because the rotation of the tool prevents the direct application of temperature sensors in the tool. Therefore, an analogy test bench for lathes was developed to generate an interrupted cut and chips with a non-constant undeformed chip thickness h. With this test bench, different coolant supply strategies with different coolant nozzle orientation, coolant supply pressure and volumetric flow rate were examined. The results show, that the coolant supply pressure, volumetric flow rate and coolant nozzle orientation have a major influence on the tool temperature. As opposed to this, no major influence was found on the cutting force.
机译:在许多检查中,高压冷却剂供应显示其在加工难以切割材料时提高生产率的极大潜力。然而,在转弯时进行关于在升高的压力下供应金属加工液的大多数考试。因此,对铣削中聚焦的高压冷却剂供应的基本机制的深刻知识对于最佳过程和工具设计至关重要,并且主要仍然缺失。然而,特别是在冷却剂供应下铣削中的刀具温度的基于传感器的冷却效果的检查具有高度挑战性,因为该工具的旋转防止了工具中的温度传感器的直接应用。因此,开发了一种用于车床的类比测试台,以产生具有非恒定未变形芯片厚度H的中断切割和碎片。通过该测试台,检查了不同冷却剂喷嘴取向,冷却剂供应压力和体积流量的不同冷却剂供应策略。结果表明,冷却剂供应压力,体积流量和冷却剂喷嘴取向对工具温度具有重大影响。与此相反,在削减力上没有发现主要影响力。

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