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首页> 外文期刊>Journal of Materials Processing Technology >Quantitative analysis of cooling and lubricating effects of graphene oxide nanofluids in machining titanium alloy Ti6Al4V
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Quantitative analysis of cooling and lubricating effects of graphene oxide nanofluids in machining titanium alloy Ti6Al4V

机译:石墨烯氧化物纳米流体在加工钛合金Ti6Al4V中的冷却和润滑效应的定量分析

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摘要

Ti6Al4V is widely used in industry due to its outstanding mechanical properties. However, the severe abrasion and high temperature at tool/chip and tool/workpiece interfaces cause various types of tool wear in machining Ti6Al4V. To ensure high machining efficiency and high quality of machined surface, cooling fluid is often used to reduce the cutting temperature and friction. In this paper, the cooling and lubricating effects of coolant with graphene oxide nanosheet suspension were investigated experimentally and theoretically. Cutting experiments were conducted to compare the performance of conventional coolant with that of the coolant with graphene oxide nanosheets of different weight percentages (0.1% and 0.5%). Cutting force and temperature on the rake face were measured in each cutting pass. A theoretical model based on computational fluid dynamics (CFD) was developed to investigate the temperature distribution and cooling efficiency quantitatively. Friction force and coefficient of friction at tool/chip interface and tool/workpiece interface were calculated to analyse the lubrication effects of different types of coolant. The results showed that the performance of cooling and lubrication of the coolant became better with the addition of graphene oxide nanosheets. Results from the analysis of flank wear and crater wear and the morphological characteristics proved that there was a significant further reduction in cutting temperature and friction force when coolant with graphene oxide nanosheets was used.
机译:由于其出色的机械性能,Ti6Al4V广泛用于工业。然而,工具/芯片和工具/工件界面处的严重磨损和高温导致加工Ti6Al4V中的各种刀具磨损。为确保高加工效率和高质量的加工表面,常用冷却流体用于降低切削温度和摩擦。在本文中,实验和理论上研究了冷却剂与石墨烯纳米片悬浮液的冷却和润滑效应。进行切割实验以比较常规冷却剂的性能与具有不同重量百分比的石墨烯氧化物纳米晶片的冷却剂(0.1%和0.5%)。在每个切割过程中测量耙面上的切割力和温度。开发了一种基于计算流体动力学(CFD)的理论模型来定量地研究温度分布和冷却效率。计算工具/芯片界面和工具/工件界面处的摩擦力和摩擦系数,分析不同类型冷却剂的润滑效果。结果表明,通过加入石墨烯纳米片,冷却剂的冷却和润滑的性能变得更好。侧面磨损和火山口磨损分析的结果证明,当使用石墨烯氧化物纳米片的冷却剂时,切削温度和摩擦力的显着进一步降低。

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