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Experimental evaluation of an eco-friendly grinding process combining minimum quantity lubrication and graphene-enhanced plant-oil-based cutting fluid

机译:最少润滑和石墨烯增强植物油基切削液相结合的环保磨削工艺的实验评估

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Minimum Quantity Lubrication (MQL) is increasingly applied in the grinding process of the hard-to-cut material (HCM) as an eco-friendly and efficient technology of lubricating and cooling. The grinding characteristics of the HCM directly affect their reliability and serviceability and so, evaluating the grinding characteristics during the MQL is very vital. In this work, the MQL with different weight concentrations of graphene-enhanced plant-oil-based cutting fluids (POBCFs) (0.05 wt%, 0.1 wt%, 0.15 wt%, and 0.2 wt%) was adopted in the grinding of the TC4 alloy, where the graphene nanoparticle (GPNP) was added to the POBCF for preparing the graphene-enhanced POBCF for improving the grinding characteristics of the TC4 alloy. The experimental evaluation of the grinding characteristics of the TC4 alloy was carried out through the grinding experiments during the six working conditions (dry, pure MQL (PMQL), and four graphene MQL (GMQL)), and the optimal working condition was the GMQL (0.1 wt%). The influence mechanisms of the GPNP on the grinding characteristics with respect to the grinding force, grinding temperature, specific grinding energy, and surface integrity were revealed. In summary, the oil films generated during the grinding area exhibit excellent cooling and lubricating performances and the appropriate amount of GPNPs can strengthen the oil film performances in both cooling and lubricating to improve the grinding characteristics. The research results show that the GPNP exhibits a remarkable impact in improving the grinding characteristics and provide the experiment basis for applying the GPNP to the MQL grinding. (C) 2019 Elsevier Ltd. All rights reserved.
机译:最小切削量润滑(MQL)越来越多地应用于难切削材料(HCM)的磨削过程中,是一种环保,高效的润滑和冷却技术。 HCM的磨削特性直接影响其可靠性和可维修性,因此,在MQL期间评估磨削特性至关重要。在这项工作中,在TC4的研磨中采用了具有不同重量浓度的石墨烯增强的植物油基切削液(POBCFs)(0.05 wt%,0.1 wt%,0.15 wt%和0.2 wt%)的MQL。合金,其中将石墨烯纳米颗粒(GPNP)添加到POBCF中以制备石墨烯增强的POBCF,以改善TC4合金的研磨特性。通过在六个工作条件(干,纯MQL(PMQL)和四个石墨烯MQL(GMQL))的磨削实验中对TC4合金的磨削特性进行了实验评估,最佳工作条件是GMQL( 0.1重量%)。揭示了GPNP对磨削特性的影响机理,包括磨削力,磨削温度,比磨削能和表面完整性。总之,在研磨区域产生的油膜表现出优异的冷却和润滑性能,并且适量的GPNP可以增强冷却和润滑的油膜性能以改善研磨特性。研究结果表明,GPNP对改善磨削性能具有显着影响,为将GPNP应用于MQL磨削提供了实验依据。 (C)2019 Elsevier Ltd.保留所有权利。

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