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Tribological evaluation of hexagonal boron nitride in modified jatropha oil as sustainable metalworking fluid

机译:改性麻风法六边形氮化物的摩擦学评价为可持续金属加工液

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摘要

The used of metalworking fluids (MWFs) from petroleum-based oil during machining process contributed negative impact to the humans and environment. Therefore, bio-based oil from vegetable oil was recently explored as an alternative solution to petroleum-based oil to implement sustainable manufacturing process. In this study, modified jatropha oil (MJO5) with and without hexagonal boron nitride (hBN) particles were evaluated through friction and wear test and orthogonal cutting performance in comparison with synthetic ester (SE). MJO5 were mixed with hBN particles at various concentrations (i.e. 0.05, 0.1 and 0.5wt.%). Experimental results showed that the addition of 0.05wt.% of hBN particles in MJO5 (MJO5a) provided lowest coefficient of friction (COF) and smallest wear scar diameter (WSD). MJO5a has the best anti-friction ability by reducing the cutting force and cutting temperature which related to the formation of thinner chips and small tool-chip contact length. MJO5a is the best substitute to SE as sustainable MWFs in the machining operation in regards to the environmental and health concern.
机译:在加工过程中,从石油基油中使用金属加工液(MWF)对人类和环境产生负面影响。因此,最近探讨了植物油的生物基油作为石油型油的替代解决方案,以实施可持续的制造过程。在该研究中,通过与合成酯(SE)相比,通过摩擦和磨损试验和正交切割性能来评估具有和不具有六边形氮化硼(HBN)颗粒的修饰的Joatropha油(MJO5)。 MJO5以各种浓度(即0.05,0.1和0.5wt%)与HBN颗粒混合。实验结果表明,MJO5(MJO5A)中加入0.05wt%的HBN颗粒提供最低系数摩擦系数(COF)和最小的耐磨疤痕直径(WSD)。 MJO5A通过减少与芯片薄片和小型工具芯片接触长度相关的切割力和切割温度具有最佳的抗摩擦能力。 MJO5A是对环境和健康的关注的加工运作中的可持续MWF的最佳替代品。

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