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首页> 外文期刊>Journal of manufacturing science and engineering: Transactions of the ASME >Experimental Results on Lamellar-Type Solid Lubricants in Enhancing Minimum Quantity Lubrication Machining
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Experimental Results on Lamellar-Type Solid Lubricants in Enhancing Minimum Quantity Lubrication Machining

机译:层状固体润滑剂增强最小量机加工的实验结果

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This paper studies the effect of various lamellar-type solid lubricants (graphite and hBN) that can be mixed into a lubricant to potentially improve the machinability of minimum quantity lubrication (MQL) machining. To examine this, the solid lubricants are classified into particles and platelets based on their aspect ratios as well as their respective sizes. In particular, the particles are classified into microparticles and nanoparticles based on their dimensions (average radius), while the platelets were classified, based on their average thickness, into two types: the "microplatelets" if the thickness is typically up to few tens of microns and the "nanoplatelets" if the thickness is well below a tenth of a micron (even down to few nanometers). Our previous work has shown that the mixture of an extremely small amount (about 0.1 wt.%) of the graphitic nanoplatelets and vegetable oil immensely enhanced the machinability of MQL machining. In this paper, many lubricants, each mixed with a particular variety of nano-or micro-platelets or one type of nanoparticles, were studied to reveal the effect of each solid lubricant on MQL machining. Prior to the MQL machining experiment, the tribological test was conducted to show that the nanoplatelets are overall more effective than the microplatelets and nanoparticles in minimizing wear despite of no significant difference in friction compared to pure vegetable oil. Consequently, the MQL ball-milling experiment was conducted with AISI 1045 steel yielding a similar trend. Surprisingly, the oil mixtures with the microplatelets increased flank wear, even compared to the pure oil lubricant when the tools with the smooth surface were used. Thus, the nanoscale thickness of these platelets is a critical requirement for the solid lubricants in enhancing the MQL machining process. However, maintaining the nanoscale thickness is not critical with the tools with the rough surfaces in enhancing the MQL process. Therefore, it is concluded that finding an optimum solid lubricant depends on not only the characteristics (material as well as morphology) of solid lubricants but also the characteristic of tool surface.
机译:本文研究了可以混入润滑剂中的各种层状固体润滑剂(石墨和hBN)的效果,以潜在地改善最小量润滑(MQL)加工的可加工性。为了对此进行检查,根据固体润滑剂的长宽比及其各自的尺寸将其分为颗粒和血小板。特别是,根据尺寸(平均半径)将颗粒分为微粒和纳米颗粒,而根据其平均厚度将血小板分为两种类型:如果厚度通常不超过几十微米,则为“微片”。如果厚度远低于十分之一微米(甚至低至几纳米),则使用“纳米片”。我们以前的工作表明,极少量(约0.1 wt。%)的石墨纳米片和植物油的混合物极大地提高了MQL加工的可加工性。在本文中,研究了许多润滑剂,每种润滑剂都与特定种类的纳米片或微片或一种类型的纳米颗粒混合,以揭示每种固体润滑剂对MQL加工的影响。在MQL机加工实验之前,进行了摩擦学测试,结果表明,尽管与纯植物油相比,摩擦没有显着差异,但纳米片总体上比微片和纳米颗粒更有效地减少了磨损。因此,使用AISI 1045钢进行了MQL球磨实验,得出了类似的趋势。出乎意料的是,与使用具有光滑表面的工具时的纯油润滑剂相比,具有微片的油混合物会增加侧面磨损。因此,这些血小板的纳米级厚度是固体润滑剂在增强MQL加工过程中的关键要求。然而,对于具有粗糙表面的工具而言,保持纳米级厚度对于增强MQL工艺不是至关重要的。因此,得出的结论是,找到最佳的固体润滑剂不仅取决于固体润滑剂的特性(材料和形态),而且还取决于工具表面的特性。

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