4.6 Article

Performance Assessment of Minimum Quantity Castor-Palm Oil Mixtures in Hard-Milling Operation

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MATERIALS
卷 14, 期 1, 页码 -

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MDPI
DOI: 10.3390/ma14010198

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MQL; castor oil; palm oil; machining responses; Shannon's entropy; TOPSIS

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Researchers have found limitations to the application of castor oil as a base fluid for Minimum Quantity Lubrication (MQL) due to its high viscosity, while palm oil offers better lubricity and flowability characteristics. A study showed that mixing castor oil with palm oil can enhance lubrication performance, with the optimal volume ratio determined through an integrated technique. The results demonstrated a significant reduction in surface roughness, cutting energy, and tool wear compared to using castor or palm oil alone.
The necessity to progress towards sustainability has inspired modern researchers to examine the lubrication and cooling effects of vegetable oils on conventional metal cutting operations. Consequently, as an eco-friendly vegetable product, castor oil can be the right choice as Minimum quantity lubrication (MQL) base fluid. Nonetheless, the high viscosity of castor oil limits its flowability and restricts its industrial application. Conversely, palm oil possesses superior lubricity, as well as flowability characteristics. Hence, an attempt has been made to improve the lubrication behavior of castor oil. Here, six castor-palm mixtures (varying from 1:0.5-1:3) were utilized as MQL-fluid, and the values of machining responses viz. average surface roughness, specific cutting energy, and tool wear were evaluated. Furthermore, an integrated Shannon's Entropy-based Technique for order preference by similarity to ideal solution (TOPSIS) framework was employed for selecting the most suitable volume ratio of castor-palm oil mixture. The rank provided by the TOPSIS method confirmed that 1:2 was the best volume ratio for castor-palm oil mixture. Afterward, a comparative analysis demonstrated that the best castor-palm volume fraction resulted in 8.262 and 16.146% lowering of surface roughness, 5.459 and 7.971% decrement of specific cutting energy, 2.445 and 3.155% drop in tool wear compared to that of castor and palm oil medium, respectively.

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