首页> 外文会议>ASME International Manufacturing Science and Engineering Conference >MINIMUM QUANTITY LUBRICATION (MQL) USING VEGETABLE OIL WITH NANO-PLATELET SOLID LUBRICANT IN MILLING TITANIUM ALLOY
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MINIMUM QUANTITY LUBRICATION (MQL) USING VEGETABLE OIL WITH NANO-PLATELET SOLID LUBRICANT IN MILLING TITANIUM ALLOY

机译:使用植物油用纳米血小板固体润滑剂在研磨钛合金中的最小数量润滑(MQL)

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Improving the machinability of titanium (Ti) alloys remains unresolved for manufacturing industries because excessive tool wear and catastrophic tool failures lead to shortened tool life and low productivity with any available cutting tool system. Besides optimizing the substrate and/or coating materials for cutting tools, improving the cooling and lubricating conditions is one of the ways to improve the machinability of Ti alloys. In this paper, we explore the possibility of using a nano-platelet, lamellar-type solid lubricant of graphite Exfoliated graphite nano-platelets (xGnP) grade C750 (or xGnP750) in Minimum Quantity Lubrication (MQL) machining of Ti-6Al-4V (Ti64). Due to the lamellar or layered crystal structure, each layer easily slides against adjacent layers to provide the lubricity when introduced at the tool/work material interface. Although the nano-platelets have a nano-thickness, they have a micro-sized diameter, which prevents the nano-platelets from penetrating through human skin and breathing through nose. This makes the great advantage in this approach compared to other nano-enhanced MQL processes. The milling experiment shows that the nano-platelets present in the MQL oil decreased flank wear and improved the tool life compared to traditional MQL with pure oil as well as dry machining. The presence of nano-platelets reduces the micro chipping and tool fracture caused by the effect of impact in interrupted machining.
机译:提高钛(TI)合金的可加工性仍未解决,因为制造业仍未解决,因为过度的工具磨损和灾难性工具故障导致刀具寿命缩短,并且与任何可用切削工具系统的刀具寿命和低生产率。除了优化用于切削刀具的基板和/或涂层材料外,还改善冷却和润滑条件是提高Ti合金可加工性的方法之一。在本文中,我们探讨了在Ti-6Al-4V的最小量润滑(MQL)加工中使用纳米血小板的纳米叶片,XGNP)级C750(或XGNP750)的纳米血小板,XGNP)级C750(或XGNP750)的可能性(TI64)。由于层状层或分层晶体结构,每层容易靠近相邻层滑动,以在工具/工作材料界面引入时提供润滑性。虽然纳米血小板具有纳米厚度,但它们具有微尺寸的直径,这防止了纳米血小板通过人体皮肤渗透并通过鼻子呼吸。与其他纳米增强的MQL过程相比,这使得这种方法具有很大的优势。研磨实验表明,与传统的MQL与纯油以及干燥加工相比,MQL油中存在的纳米血小板降低并改善了工具寿命。纳米血小板的存在减少了由中断加工的影响的影响引起的微碎裂和工具骨折。

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