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Optimization of cutting parameters considering tool wear conditions in low-carbon manufacturing environment

机译:考虑低碳制造环境工具磨损条件的切割参数优化

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摘要

Carbon emissions have drawn widely attention due to the worsening climate changes. In a machining process, a reasonable selection of cutting parameters can not only save the production cost and time, but also reduce the production carbon emissions. In addition, the wear conditions of different cutting tools also have great influence on cutting parameters selection as they could cause huge difference on carbon emissions. However, in traditional optimization methods of cutting parameters, the tool wear conditions are always ignored. Thus, in order to overcome this limitation, an optimization method of cutting parameters considering the tool wear conditions is developed. Firstly, the quantified relationships among cutting parameters, tool wear and production indexes (production carbon emissions, cost and time) are analysed. Then, a multi-objective cutting parameters optimization model is established based on the above production indexes to determine the optimal cutting parameters and tools. Thirdly, a modified NSGA-II algorithm is used to resolve the proposed model. Finally, a case study is designed to demonstrate the advantages and feasibility of the proposed approach. The results show that (i) the optimal cutting parameters change with the tool wear conditions; (ii) For the same type of cutting tools with different wear conditions, the optimal values of production carbon emissions, cost and time increase along with the raise of the tool wear conditions; (iii) For different available cutting tools with different tool wear conditions, it is necessary to apply a multi-objective optimization method to decide the optimal production carbon emissions, cost and time. (C) 2019 Elsevier Ltd. All rights reserved.
机译:由于气候变化恶化,碳排放引起了广泛的关注。在加工过程中,合理的切割参数选择不仅可以节省生产成本和时间,而且还可以降低生产碳排放量。此外,不同切削工具的磨损条件对切割参数选择产生了很大的影响,因为它们可能导致碳排放巨大差异。但是,在传统的切割参数的优化方法中,始终忽略工具磨损条件。因此,为了克服这种限制,开发了考虑刀具磨损条件的切割参数的优化方法。首先,分析了切割参数,工具磨损和生产指标(生产碳排放,成本和时间)之间的量化关系。然后,基于上述生产指标建立多目标切割参数优化模型,以确定最佳的切削参数和工具。第三,修改后的NSGA-II算法用于解析所提出的模型。最后,案例研究旨在展示所提出的方法的优点和可行性。结果表明,(i)最佳切削参数随工具磨损条件而变化; (ii)对于具有不同磨损条件的相同类型的切削工具,生产碳排放的最佳值,成本和时间随着工具磨损条件的提高; (iii)对于具有不同工具磨损条件的不同可用切削工具,有必要应用多目标优化方法来决定最佳的生产碳排放,成本和时间。 (c)2019 Elsevier Ltd.保留所有权利。

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