EFFECTS OF VARIOUS VEGETABLE OIL AND WATER MIXTURES USED AS CUTTING FLUIDS ON TOOL WEAR AND SURFACE ROUGHNESS

Selim Bacak, Ömer Karabiyik
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Abstract

In the study, various vegetable oil and water mixtures were used as cutting fluid to be tested in machining. These fluids have been used as an alternative to cutting fluids made from synthetic and semi-synthetic oils, which have harmful effects on nature and humans, and their performance has been investigated. As vegetable oil, Soy, Sunflower and Canola oils were mixed with water each and separate cutting fluids were obtained. Vegetable oil and water were mixed at 7 % and 93 %, respectively, and turned into a homogeneous liquid. Dry cutting and commercial cutting fluid using for cutting was also performed in comparison turning. In the study, AISI 4140 steel was processed on a CNC turning machine using an uncoated carbide insert. In all experiments, the cutting speed was kept constant as 200 m/min, the feed rate as 0,2 mm/rev, and the depth of cut at 1 mm. Cutting fluids were used in two different ways in experiments as liquid and 4 bar pressure spraying. As a result of the experiments, tool wear and surface roughness values were studied. The best results in all processing terms have been found in experiments with pressurized spraying of a mixture of canola oil and water. The surface roughness value was measured as 1,35 μm and the tool wear value was measured as 0,13 mm. The worst values were obtained in experiments carried out under dry cutting condition. Surface roughness value was measured as 2,31 μm and tool wear value was measured as 0,24 mm.
作为切削液的各种植物油和水混合物对刀具磨损和表面粗糙度的影响
在研究中,采用不同的植物油和水的混合物作为切削液进行加工试验。这些液体已被用作合成和半合成油制成的切削液的替代品,这些切削液对自然和人类都有有害影响,它们的性能已被研究。作为植物油,大豆油、葵花籽油和菜籽油分别与水混合,得到单独的切削液。植物油和水分别以7%和93%的比例混合,变成均匀的液体。用干切削液和工业切削液进行了车削比较。在研究中,AISI 4140钢在数控车床上使用未涂层硬质合金刀片进行加工。在所有实验中,切削速度保持在200 m/min,进给量为0.2 mm/rev,切削深度为1 mm。在实验中,切削液以液体和4 bar压力喷涂两种不同的方式使用。根据实验结果,研究了刀具磨损和表面粗糙度值。在对菜籽油和水的混合物进行加压喷洒的实验中,所有加工条件下的最佳结果都被发现。测量表面粗糙度值为1.35 μm,刀具磨损值为0.13 mm。在干切削条件下进行的实验得到了最差值。表面粗糙度值为2,31 μm,刀具磨损值为0,24 mm。
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