College of Mechanical Engineering and Automation, National Huaqiao University, Xiamen 361021, China.
Institute of Manufacturing Engineering, National Huaqiao University, Xiamen 361021, China.
Molecules. 2023 Apr 22;28(9):3648. doi: 10.3390/molecules28093648.
Cutting fluids are the most effective method to lower the cutting temperature and decrease the cutting tool wear. At the same time, the cutting fluids influence the corrosion resistance property of the machined surface. In this study, chlorinated paraffin (CP), which is a common additive in the cutting fluid, was selected as the research objective to study its corrosion resistance property. The passivation effect of CP with different concentrations on the machined surface of stainless steel was studied. Electrochemical measurements and surface morphology investigation were used to characterize the passivation effect of CP with different concentrations. The test results showed that the corrosion resistance of stainless steel in the cutting fluid was enhanced with the increase in CP additive. This reason is that the charge transfer resistance increases and the corrosion current density decreases with the increase in CP additive. The X-ray photoelectron spectroscopy (XPS) results show that the proportion of metal oxides on the processed surface of the stainless steel sample was increased from 20.4% to 22.0%, 32.9%, 26.6%, and 31.1% after adding 1 mL, 2 mL, 4 mL and 6 mL CP in the cutting fluid with a total volume of 500 mL, respectively. The oxidation reaction between CP and the stainless steel sample resulted in an increase in metal oxides proportion, which prevented the stainless steel sample from corrosion in cutting fluid.
切削液是降低切削温度和减少刀具磨损的最有效方法。同时,切削液会影响已加工表面的耐腐蚀性。在这项研究中,选择氯化石蜡(CP)作为研究对象,研究其耐腐蚀性。研究了不同浓度 CP 对不锈钢加工表面的钝化效果。采用电化学测量和表面形貌研究来表征不同浓度 CP 的钝化效果。试验结果表明,随着 CP 添加剂的增加,切削液中不锈钢的耐腐蚀性增强。这是因为随着 CP 添加剂的增加,电荷转移电阻增大,腐蚀电流密度减小。X 射线光电子能谱(XPS)结果表明,在添加了 1 mL、2 mL、4 mL 和 6 mL CP 后,不锈钢样品加工表面的金属氧化物比例分别从 20.4%增加到 22.0%、32.9%、26.6%和 31.1%,而在总容积为 500 mL 的切削液中。CP 与不锈钢样品之间的氧化反应导致金属氧化物比例增加,从而防止了不锈钢样品在切削液中的腐蚀。