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Effect of Fluid Concentration in Titanium Machining with an Atomization-based Cutting Fluid (ACF) Spray System

机译:钛加工流体浓度与雾化切削液(ACF)喷涂系统的影响

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The aim of this work is to investigate the effect of metal-working fluid (MWF) concentration on the machining responses including tool life and wear, cutting force, friction coefficient, chip morphology, and surface roughness during the machining of titanium with the use of the ACF spray system. Five different concentrations from 5 to 15% of a water-soluble metalworking fluid (MWF) were applied during turning of a titanium alloy, Ti-6Al-4V. The thermo-physical properties such as viscosity and surface tension of these concentrations were also measured. The test results demonstrate that the tool life first extends with the increase in MWF concentration and then drops with further increase. At low concentration (e.g. 5%), a lack of the lubrication effect causes to increase in a higher friction at the tool-chip interface resulting in severe chipping and tool nose/flank wear within a short machining time. On the other hand, at high concentration, the cooling effect is less. This increases cutting temperature and a faster thermal softening/chipping/notching of the tool material and higher friction at the tool-chip-workpiece interaction zones resulting in early tool failure. A good balance between the cooling and the lubrication effects seems to be found at the 10% MWF concentration as it offers the best machining performance.
机译:这项工作的目的是探讨金属加工液(MWF)浓度对加工反应的影响,包括工具寿命和磨损,切割力,摩擦系数,芯片形态,使用期间的加工过程中的表面粗糙度ACF喷雾系统。在钛合金Ti-6Al-4V的转弯期间施加来自5至15%的水溶性金属加工液(MWF)的五种不同浓度。还测量了这些浓度的粘度和表面张力的热物理性质。测试结果表明,刀具寿命首先随着MWF浓度的增加而延伸,然后进一步增加。在低浓度(例如5%),缺乏润滑效应导致工具芯片界面处于更高的摩擦力,从而在短的加工时间内产生严重的碎裂和工具鼻子/侧面磨损。另一方面,在高浓度下,冷却​​效果较少。这增加了切削温度和更快的热软化/切削/切削/切碎/切口工具材料的碎片材料和更高的摩擦,导致早期刀具失效。冷却和润滑效果之间的良好平衡似乎在10%MWF浓度下发现,因为它提供了最佳的加工性能。

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