Effects of Physicochemical Properties of Different Base Oils on Friction Coefficient and Surface Roughness in MQL Milling AISI 1045

被引:3
作者
Qingan Yin
Changhe Li
Lan Dong
Xiufang Bai
Yanbin Zhang
Min Yang
Dongzhou Jia
Runze Li
Zhanqiang Liu
机构
[1] Qingdao University of Technology,School of Mechanical and Automotive Engineering
[2] Shandong University,Key Laboratory of High Efficiency and Clean Mechanical Manufacture of MOE, School of Mechanical Engineering
[3] Qingdao Binhai University,School of Mechanical and Electrical Engineering
[4] Inner Mongolia University for Nationalities,School of Mechanical Engineering
[5] University of Southern California,Department of Biomedical Engineering
[6] Shandong University,Key National Demonstration Center for Experimental Mechanical Engineering Education
来源
International Journal of Precision Engineering and Manufacturing-Green Technology | 2021年 / 8卷
关键词
Milling; Minimum quantity lubrication; Different base oil; Physicochemical property; Sustainable machining;
D O I
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中图分类号
学科分类号
摘要
Minimum quantity lubrication (MQL) is an emerging green and resource-saving machining technique jetting minute amount lubricants and gas after mixing and atomization. However, MQL development is restricted to mineral oils because of its undegradability and threat to the environment and human health. Vegetable oils can replace mineral oils as base oil for MQL benefitting from its biodegradability and renewable property. Nevertheless, the lubrication mechanism at the tool-workpiece interface of different vegetable oils with various physicochemical properties has not been revealed systematically. In order to verify the interfacial lubrication characteristics of different vegetable oils, MQL milling experiments of AISI 1045 based on five vegetable oils (cottonseed, palm, castor, soybean, and peanut oils) were carried out. The experimental results showed that, palm oil obtained the lowest milling force (Fx = 312 N, Fy = 156 N), friction coefficient (0.78), and surface roughness values (Ra = 0.431 μm, RSm = 0.252 mm) and the smoothest surface of workpiece. Furthermore, the physiochemical properties (composition, molecular structure, viscosity, surface tension, and contact angle) of vegetable oil were analyzed. Palm oil with high content of saturated fatty acid, high viscosity and small contact angle can form the lubricating oil film with the highest strength and the largest spreading area at the tool-workpiece interface. Therefore, palm oil can achieve the optimal lubrication effect.
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页码:1629 / 1647
页数:18
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