首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >A study of viscosity and thermal conductivity of vegetable oils as base cutting fluids for minimum quantity lubrication machining of difficult-to-cut metals
【24h】

A study of viscosity and thermal conductivity of vegetable oils as base cutting fluids for minimum quantity lubrication machining of difficult-to-cut metals

机译:植物油作为基础切削液的粘度和导热率研究难以切割金属的最小润滑加工

获取原文
获取原文并翻译 | 示例
           

摘要

The properties of environmentally friendly, sustainable, and renewable cutting fluids are very important to effective machining of difficult-to-cut materials under minimum quantity lubrication (MQL). This paper presents the experimental investigation of viscosity and thermal conductivity of three vegetable oils for use as base cutting fluids: modified high oleic soybean oil (HOSO), refined low oleic soybean oil (LOSO), acculube LB2000 (LB2000) oil, and mineral oil-based emulsion cutting fluid (EC) as benchmark and at temperature from 25 to 70 degrees C. The results show that viscosity of all vegetable oils decreases exponentially with temperature, and are significantly higher than that of EC. HOSO shows an enhanced viscosity of 6.03% compared to LB2000, 25.69% compared to LOSO, and 4688.30% compared to EC at 30 degrees C temperature. Thermal conductivity of soybean oils and LB2000 is similar, decreases gradually from 0.192 to 0.179 W/mK, not significantly affected by temperature and very low compared to EC. EC increases from 0.698 to 1.857 W/mK between 25 and 50 degrees C and decreases from 1.857 to 0.762 W/mK between 50 and 70 degrees C. Critical temperature of EC is around 50 degrees C. Shear stress-shear rate plots of vegetable oils show linear relation typical of Newtonian fluids. The R-square of HOSO was greater than 0.99 at all investigated temperature and better than the observed values for LB2000, LOSO, and EC. HOSO with higher oleic fatty acid composition shows the most significant viscosity enhancement and oxidation stability, and is recommended as alternative to EC and based-cutting fluid for MQL machining.
机译:环保,可持续和可再生切削液的性质对于在最小量润滑下有效地加工难以切割的材料(MQL)。本文介绍了三种植物油的粘度和导热率的实验研究,用作基础切削液:改性高油酸豆油(HOSO),精制低油酸大豆(LOSO),Acculube LB2000(LB2000)油和矿物油基于25至70摄氏度的基准和温度为基准切割液(EC)。结果表明,所有植物油的粘度随温度呈指数下降,显着高于EC。与LOSO相比,Hoso粘度为6.03%,与LOSO相比,25.69%,4688.30%,与EC温度相比。大豆油和LB2000的导热系数相似,逐渐降低0.192至0.179W / MK,与EC相比,温度显着影响,非常低。 EC从0.698增加到25到50℃的1.857W / mk,从1.857℃下降到0.762 W / mK在50和70摄氏度之间。EC的临界温度是植物油的剪切应力 - 剪切速率图。展示牛顿液体典型的线性关系。在所有研究的温度下,Hoso的R-Square大于0.99,比LB2000,LOSO和EC的观察值更好。 HOSO具有较高的油酸脂肪酸组合物,显示出最显着的粘度增强和氧化稳定性,并建议作为MQL加工的EC和基于切割液的替代品。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号