纳米流体(纳米石墨烯)/超声雾化微润滑在SKD11模型钢微铣削加工中的应用

W. Huang, Wen Kai Yang, T. Chiang, Jyh-Homg Chou
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引用次数: 1

摘要

研究了纳米流体添加剂超声雾化润滑系统在SKD11模型钢微铣削加工中的应用。采用石墨烯纳米颗粒作为纳米流体的添加剂。超声雾化系统不仅可以有效改善纳米颗粒在纳米流体中的团聚现象,还可以提供颗粒润滑的好处。本试验采用田口法,采用L934正交阵列法探索最佳工艺参数。以微铣削力评价为唯一焦点,分析了纳米石墨烯的平均厚度和重量百分比浓度、超声雾化量和喷嘴角度等控制参数。在此基础上,找到了纳米石墨烯与超声雾化微润滑的最佳组合,并将纳米碳纳米管与超声雾化微润滑的组合与基液与超声雾化微润滑的组合进行了比较。实验结果表明,添加纳米石墨烯的纳米流体可以进一步降低微铣削过程中的微铣削力,从而抑制加工过程中产生的毛刺。可以达到提高刀具寿命和提高工件质量的目的。与其他两种润滑液相比,纳米石墨烯与超声雾化微润滑液的微铣削力分别降低了7.8%和12.9%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The Application of Nanofluid (Nano-Graphene)/Ultrasonic Atomization Micro-Lubrication in Micro-Milling Process on SKD11 Die Steel
This study investigated the application of ultrasonic atomization lubrication system with Nanofluid additive implemented in micro-milling process on SKD11 die steel. The graphene nanoparticles are employed as the additive of Nanofluid. Ultrasonic atomization system not only can effectively improve the agglomeration phenomena of Nanoparticles in Nanofluids but also provide the benefit of particle lubrication. For this experiment, Taguchi method was adopted and L934 orthogonal array was used to explore the optimal parameters. Targeting micro-milling force evaluation as the only focus, the control parameters included the average thickness and weight percentage concentration of Nano-graphene, the amount of ultrasonic atomization, and the angle of nozzle are analyzed. Based on the analysis, the optimal combination of Nano-graphene with ultrasonic atomization micro-lubrication was found, and then compared to the case of MWCNTs with ultrasonic atomization micro-lubrication and the other case of basal liquid with ultrasonic atomization micro-lubrication. According to the experiment results, the Nanofluid with Nano-graphene added can further reduce the micro-milling force of micro-milling process that suppress the burr generated by the processing. It can achieve the goal of tool life improvement and high workpiece quality. The micro-milling force using Nano-graphene with ultrasonic atomization micro-lubrication is reduced by 7.8% and 12.9% compared to the other two lubricating fluids, respectively.
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