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Investigation of Cutting Tools and Working Conditions Effects when Cutting Ti-6al-4V using Vegetable Oil-Based Cutting Fluids

机译:使用植物油基切削液切削Ti-6al-4V时的切削刀具和工作条件影响的研究

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摘要

Power consumed in metal cutting is typically converted into heat near the cutting tool edge. Cutting fluids are then provided to a cutting zone in order to improve the tribological characteristics of machining processes and to dissipate the generated heat. The use of conventional cutting fluids however has lately been questioned due to the adverse impact on the environment and human health. Therefore, trends are directed to various alternatives such as vegetable oils (VOs). VOs offer a combination of good biodegradability and high lubricity, eco-friendly and compatibility with additives, low toxicity and volatility, high flash points and high viscosity indices. This paper details preliminary experimental results when turning Ti-6Al-4 V. The impact of VO-based cutting fluids, cutting tool materials and working conditions were investigated. Two sets of experimental plans were designed comprising 25 and 27 tests with analysis of variance (ANOVA) employed to evaluate the effect of process variables on Ra and tool flank wear. In general, surface roughness Ra ranged between 0.56 μm and 1.81 μm and statistical analysis showed that the main contributing factor for Ra is feed rate having a high Percentage Contribution Ratio (PCR) of 94.4%. Noticeable increase in tool tip flank wear was recorded when higher cutting speeds were used.
机译:金属切削中消耗的功率通常会转换成切削刃附近的热量。然后将切削液提供给切削区域,以改善加工过程的摩擦学特性并消散产生的热量。然而,由于对环境和人类健康的不利影响,传统切削液的使用近来受到质疑。因此,趋势指向诸如植物油(VOs)的各种替代品。 VOs具有良好的生物降解性和高润滑性,环保和与添加剂的相容性,低毒性和挥发性,高闪点和高粘度指数的组合。本文详细介绍了车削Ti-6Al-4 V时的初步实验结果。研究了VO基切削液,切削刀具材料和工作条件的影响。设计了两组实验计划,包括25和27个测试,并采用方差分析(ANOVA)来评估工艺变量对Ra和刀具侧面磨损的影响。通常,表面粗糙度Ra在0.56μm和1.81μm之间,并且统计分析表明,对Ra的主要影响因素是进料速度,其具有94.4%的高百分比贡献率(PCR)。当使用更高的切削速度时,刀具尖端的侧面磨损显着增加。

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