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Sustainability assessment associated with surface roughness and power consumption characteristics in nanofluid MQL-assisted turning of AISI 1045 steel

机译:纳米流体MQL辅助转动纳米流体MQL辅助转动与表面粗糙度和功耗特性相关的可持续性评估

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摘要

The constant pressure on the manufacturers to innovate and implement sustainable processes has triggered researching on machining with low carbon footprint, minimum energy consumption by machine tools, and improved products at the lowest cost—this is exactly done in this paper. Herein, the advanced cooling lubrication, i.e., nanofluid assistance, besides dry and flood cooling, during machining has been experimented, and used as the basis for sustainability assessment. This assessment is carried out in respect of surface quality and power consumption as well as the impact on environment, cost of machining, management of waste, and finally the safety and health issues of operators. For a better sustainability, a systematic optimization has been performed. In addition, the solution for an improved machinability has been proposed along with the statistically verified mathematical models of machining responses. Results showed that the nanofluid minimum quantity lubrication showed the most sustainable performance with a total weighted sustainability index 0.7, and it caused the minimum surface roughness and power consumption. The highest desirable (desirability?=?0.9050) optimum results are the cutting speed of 116?m/min, depth of cut 0.25?mm, and feed rate of 0.06?mm/rev. Furthermore, a lower feed rate is suggested for better surface quality while for reduced power consumption the lower control factors are better.
机译:制造商创新和实施可持续流程的恒定压力已引发对低碳足迹的加工,机床最低能耗,以及以最低成本的改进产品 - 这完全是在本文中进行的。这里,在加工过程中,在加工期间,除了干燥和防洪之外,先进的冷却润滑,即纳米流体辅助已经进行了实验,并用作可持续性评估的基础。在表面质量和功耗以及对环境的影响,加工成本,浪费的影响以及最终运营商的安全和健康问题的影响。为了更好的可持续性,已经进行了系统优化。此外,已经提出了改进的加工性的解决方案以及加工响应的统计学验证的数学模型。结果表明,纳米流体最小量润滑显示出最具可持续性的性能,总加权可持续性指数0.7,并引起了最小的表面粗糙度和功耗。最高的理想(可取性?= 0.9050)最佳结果是116Ωm/ min的切削速度,切削0.25Ωmm的深度,进给速率为0.06?mm / ref。此外,提出了较低的进料速率以进行更好的表面质量,而对于降低的功耗,较低的控制因子更好。

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