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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part B. Journal of engineering manufacture >Influence of a high-pressure lubricoolant supply on thermo-mechanical tool load and tool wear behaviour in the turning of aerospace materials
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Influence of a high-pressure lubricoolant supply on thermo-mechanical tool load and tool wear behaviour in the turning of aerospace materials

机译:高压润滑液供应对航空材料车削过程中热机械工具负载和工具磨损行为的影响

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摘要

In the field of machining difficult-to-cut materials like titanium or nickel-based alloys, the use of a high-pressure lubricoolant supply may result in a significant increase of productivity and process stability. Due to enhanced cooling and lubrication of the cutting zone and thus reduced thermal tool load, tool wear can be decreased which allows higher applicable cutting speeds. Furthermore, the process stability can be increased as a result of effective chip breaking and chip evacuation. The present paper investigates the effect of high-pressure lubricoolant jets, directed into the tool-chip interface, in a longitudinal turning process with cemented carbide tools. For this type of lubricoolant supply the reduction of the contact length between tool and chip is an important detail. In turning of Inconel 718 and Ti6Al4V, the cutting tool temperature, tool wear, and resulting chip forms as well as the ratio of cutting forces and tool-chip contact area were analysed as a function of the lubricoolant supply pressure and flowrate (up to 300 bar, 551/min). To study the effect of the high-pressure lubricoolant supply, reference tests were carried out using conventional flood cooling. The results suggest that the tool temperature can be decreased by almost 25 per cent by the use of a high-pressure lubricoolant supply for both machined workpiece materials. However, due to the different tool wear mechanisms of the presented materials and the change in the specific load on the cutting edge during machining, the resulting tool wear was influenced differently. In the best case, tool wear could be reduced in an order of magnitude of 50 per cent, while in other cases tool wear even increased significantly due to the use of a high-pressure lubricoolant supply.
机译:在机械加工难切削的材料(例如钛或镍基合金)领域,使用高压润滑冷却剂可能会显着提高生产率和工艺稳定性。由于增强了切削区域的冷却和润滑作用,因此减少了热刀具负荷,可以减少刀具磨损,从而提高切削速度。此外,由于有效的断屑和排屑可以提高工艺稳定性。本文研究了硬质合金刀具在纵向车削过程中导向工具-切屑界面的高压润滑冷却剂射流的影响。对于这种类型的润滑剂冷却剂,减少工具与切屑之间的接触长度是一个重要的细节。在Inconel 718和Ti6Al4V的车削过程中,分析了刀具温度,刀具磨损和产生的切屑形式,以及切削力与刀具与切屑的接触面积之比,作为润滑液供给压力和流量的函数(最大为300 bar,551 / min)。为了研究高压润滑冷却剂供应的影响,使用常规的溢流冷却进行了参考测试。结果表明,通过对两种加工的工件材料使用高压润滑剂冷却剂,刀具温度可降低近25%。但是,由于所提供材料的刀具磨损机理不同,并且在加工过程中切削刃上的比重有所变化,因此,所产生的刀具磨损也会受到不同的影响。在最佳情况下,可以将工具磨损降低50%的数量级,而在其他情况下,由于使用高压润滑冷却剂供应,工具磨损甚至会大大增加。

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