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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Pareto optimization of multi-pass turning of grey cast iron with practical constraints using a deterministic approach
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Pareto optimization of multi-pass turning of grey cast iron with practical constraints using a deterministic approach

机译:用决定性方法用实际限制的灰色铸铁多通转向多通转向的优化

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摘要

For a given workpiece material, in addition to the cutting tool material used and its geometry, a set of adopted cutting parameters significantly affect the actual turning process. With the ultimate aim of improving machining efficiency while ensuring the specified part quality and lowest possible energy consumption and costs, the optimization of the turning regimes is of great importance. Therefore, a multi-objective optimization model for the multi-pass turning of grey cast iron was developed in the present research. Part production costs and consumed energy were both considered as conflicting objective functions, while several practical constraints related to the part quality, machine tool limitations, and product specifications in finishing and roughing were also included in the optimization model. The formulation of the objective functions was based on the analytical model for the unit production time whose validation was performed using toolpath simulation in SinuTrain and FeatureCAM software. In order to obtain Pareto compromise solutions in a reasonable computational time as well as to avoid getting stuck in local optima in the optimization hyper-space, a deterministic approach based on the application of the brute force optimization algorithm is proposed to solve the developed multi-objective optimization problem with several constraints of the equality and inequality type. The obtained optimization results were validated experimentally and through a comparison with related analytical and empirical turning optimization studies.
机译:对于给定的工件材料,除了使用的切割工具材料及其几何形状之外,一组采用的切割参数显着影响实际的转动过程。随着终极旨在提高加工效率,同时确保指定的部分质量和最低的能源消耗和成本,转向制度的优化具有重要意义。因此,在本研究中开发了一种用于灰铸铁多通转动的多目标优化模型。部分生产成本和消耗的能量都被视为相互矛盾的客观函数,而在优化模型中也包括在优化和粗加工中的零件质量,机床限制和产品规范相关的几种实际限制。目标函数的配方基于用于单位生产时间的分析模型,其验证在SINUTRAIN和FEATURCAM软件中使用刀具路径仿真进行。为了在合理的计算时间内获得Pareto危及解决方案以及避免在优化超空间中陷入局部最佳空间中,提出了一种基于蛮力优化算法应用的确定性方法来解决开发的多个客观优化问题与平等和不等式类型的若干约束。获得的优化结果是通过实验验证的,并通过与相关分析和经验转型优化研究的比较进行验证。

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