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The effect of concentration of coco amido propyl betaine (CAPB) as green additive in bio-based coconut oil lubricant on the machining performance of Inconel 718

机译:CoCo Amido Propyl Betaine(CAPB)浓度的效果在生物基椰子油润滑剂中为绿色添加剂,Inconel 718的加工性能

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The rising concern on the detrimental effects of mineral oil-based metal cutting fluid on the environment has open the way for a more natural and environmentally friendly alternative such as vegetable oils. Application of these biodegradable fluids in machining in place of mineral oil-based metal cutting fluids has been proven to produce equal or even better results than the conventional cutting fluids. Furthermore, combining bio-based cutting fluid with minimum quantity lubricant (MQL) system further improves machining results and reduces machining cost while minimizing the negative impacts of cutting fluids to the environment. However, the bacterial contamination risk and inability to withstand high impact during machining makes bio-based fluid a less preferable cutting fluid choice. Anyhow, with proper fluid formulation, the contamination risk of bio-based cutting fluids can be lowered and their cooling and lubrication ability enhanced. To date, there are currently lack of research works and findings on the lubrication ability of bio-based cutting fluids. Hence, in this work, the author tests the contrariety of bio-based oil formulation using coconut oil with different concentrations of coco amido propyl betaine (CAPB) while machining Inconel 718. The experiment settings was kept constant at 80 m/min cutting speed, 0.2 mm/rev feed rate and 0.1 mm depth of cut, and the effects on cutting tool and surface finish were observed. Experimental result revealed that higher concentrations of CAPB reduces tool wear and surface roughness.
机译:对矿物油基金属切削液对环境不利影响的关注,为植物油等更自然和环保的替代方案开辟了途径。已经证明,这些可生物降解的流体在机械加工时的应用已经被证明是生产与传统切削液相同甚至更好的结果。此外,将生物基切削液与最小量润滑剂(MQL)系统相结合,进一步提高了加工结果并降低了加工成本,同时最小化切削液对环境的负面影响。然而,在加工过程中细菌污染风险和无法承受高冲击,使得生物基流体不太优选的切削液选择。无论如何,通过适当的流体制剂,可以降低生物基切削液的污染风险,并增强了它们的冷却和润滑能力。迄今为止,目前缺乏研究作品和关于生物的切削液的润滑能力的研究。因此,在这项工作中,作者在加工Inconel 718的同时测试使用椰子油与不同浓度的CoCo丙基丙基甜菜碱(CAPB)的椰子油的反向症。实验设置以80米/分钟的切削速度保持恒定, 0.2mm / Rev进给速率和0.1毫米的切割深度,观察到切削工具和表面光洁度的影响。实验结果表明,较高浓度的CAPB可降低工具磨损和表面粗糙度。

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