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首页> 外文期刊>Materials >Towards Optimization of Machining Performance and Sustainability Aspects when Turning AISI 1045 Steel under Different Cooling and Lubrication Strategies
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Towards Optimization of Machining Performance and Sustainability Aspects when Turning AISI 1045 Steel under Different Cooling and Lubrication Strategies

机译:在不同冷却和润滑策略下转动AISI 1045钢时的加工性能和可持续性方面的优化

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In this work, an extensive analysis has been presented and discussed to study the effectiveness of using different cooling and lubrication techniques when turning AISI 1045 steel. Three different approaches have been employed, namely dry, flood, and minimum quantity lubrication based nanofluid (MQL-nanofluid). In addition, three multi-objective optimization models have been employed to select the optimal cutting conditions. These cases include machining performance, sustainability effectiveness, and an integrated model which covers both machining outputs (i.e., surface roughness and power consumption) and sustainability aspects (carbon dioxide emissions and total machining cost). The results provided in this work offer a clear guideline to select the optimal cutting conditions based on different scenarios. It should be stated that MQL-nanofluid offered promising results through the three studied cases compared to dry and flood approaches. When considering both sustainability aspects and machining outputs, it is found that the optimal cutting conditions are cutting speed of 147 m/min, depth of cut of 0.28 mm and feed rate of 0.06 mm/rev using MQL-nanofluid. The three studied multi-objective optimization models obtained in this work provide flexibility to the decision maker(s) to select the appropriate cooling/lubrication strategy based on the desired objectives and targets, whether these targets are focused on machining performance, sustainability effectiveness, or both. Thus, this work offers a promising attempt in the open literature to optimize the machining process from the performance–sustainability point of view.
机译:在这项工作中,已经提出并讨论了广泛的分析,以研究在转向AISI 1045钢时使用不同冷却和润滑技术的有效性。已经采用了三种不同的方法,即干燥,洪水和最小数量润滑的纳米流体(MQL-Nanofluid)。此外,已经采用了三种多目标优化模型来选择最佳的切削条件。这些情况包括加工性能,可持续性效率和集成模型,涵盖加工输出(即,表面粗糙度和功耗)和可持续性方面(二氧化碳排放和总加工成本)。本工作中提供的结果提供了明确的指导,可根据不同方案选择最佳的切削条件。应该指出,与干燥和洪水方法相比,MQL-Nanofluid通过三种研究的病例提供了有希望的结果。在考虑可持续发展方面和加工输出时,发现最佳切削条件是147米/分钟的切削速度,切割深度为0.28mm,进料速率为0.06mm / Ref,使用MQL纳米流体。在这项工作中获得的三个研究的多目标优化模型为决策者提供了灵活性,以基于期望的目标和目标选择适当的冷却/润滑策略,这些目标是否集中在加工性能,可持续性效果或两个都。因此,这项工作提供了开放文献的有希望的尝试,以优化从性能可持续性的角度来优化加工过程。

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