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Modeling of cutting forces in a face-milling operation with Gene Expression Programming

机译:使用基因表达式编程对面铣操作中的切削力建模

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摘要

Cutting forces is one of the most fundamental elements that affect the performance of cutting operation. Finding the rules that how process and environment factors affect the values of cutting forces will help to set the process parameters of the future cutting operation and further improve production quality and efficiency. Since cutting forces is impacted by different machining parameters and the inherent uncertainties in the machining process, how to predict the cutting forces becomes a challengeable problem for the researchers and engineers. Gene Expression Programming (GEP) combines the advantages of the genetic algorithm (GA) and genetic programming (GP), and has been successfully applied in function mining and formula finding, so it should be suitable to solve the above problem. In this paper, a method based on GEP has been proposed to construct the prediction model of cutting forces in a face-milling operation. At the basis of defining a GEP environment for the problem and improving the method of constant creation, an explicit prediction model of cutting forces has been constructed. To verify the feasibility and performance of the proposed approach, experimental studies have been conducted to compare this approach with some previous works. The obtained results show that the constructed prediction model fits very well with the experimental data, and can be used to estimate the cutting forces and optimize the cutting parameters. The proposed method will lead to the reduction in production costs and production time, and improvement of product quality.
机译:切削力是影响切削性能的最基本因素之一。找到有关工艺和环境因素如何影响切削力值的规则,将有助于设置未来切削操作的工艺参数,并进一步提高生产质量和效率。由于切削力受到不同的加工参数和加工过程中固有的不确定性的影响,因此如何预测切削力成为研究人员和工程师面临的挑战。基因表达编程(GEP)结合了遗传算法(GA)和遗传编程(GP)的优点,并已成功应用于函数挖掘和公式查找中,因此应该适合解决上述问题。本文提出了一种基于GEP的方法来构造平面铣削加工中切削力的预测模型。在为问题定义GEP环境并改进常量创建方法的基础上,构建了切削力的显式预测模型。为了验证所提出方法的可行性和性能,已进行了实验研究,以将该方法与以前的一些工作进行比较。所得结果表明,所建立的预测模型与实验数据吻合良好,可用于估计切削力和优化切削参数。所提出的方法将导致生产成本和生产时间的减少,并提高产品质量。

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