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Mathematical simulation and optimization of cutting mode in turning of workpieces made of nickel-based heat-resistant alloy

机译:镍基耐热合金工件车削切削方式的数学模拟与优化

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摘要

A predictive simulation technique of optimal cutting modes in the turning of workpieces made of nickel-based heat-resistant alloys, different from the well-known ones, is proposed. The impact of various factors on the cutting process with the purpose of determining optimal parameters of machining in concordance with certain effectiveness criteria is analyzed in the paper. A mathematical model of optimization, algorithms and computer programmes, visual graphical forms reflecting dependences of the effectiveness criteria – productivity, net cost, and tool life on parameters of the technological process - have been worked out. A nonlinear model for multidimensional functions, "solution of the equation with multiple unknowns", "a coordinate descent method" and heuristic algorithms are accepted to solve the problem of optimization of cutting mode parameters. Research shows that in machining of workpieces made from heat-resistant alloy AISI N07263, the highest possible productivity will be achieved with the following parameters: cutting speed v = 22.1 m/min., feed rate s=0.26 mm/rev; tool life T = 18 min.; net cost – 2.45 $ per hour.
机译:提出了一种与已知的镍基耐热合金制成的工件车削最佳切削方式的预测模拟技术。本文分析了各种因素对切削过程的影响,目的是根据某些有效性标准确定最佳的加工参数。已经建立了优化的数学模型,算法和计算机程序,反映了有效性标准(生产率,净成本和工具寿命对工艺过程参数的依赖性)的可视化图形形式。多维函数的非线性模型,“具有多个未知数的方程的求解”,“坐标下降法”和启发式算法被接受以解决切削模式参数的优化问题。研究表明,在加工耐热合金AISI N07263的工件时,通过以下参数可实现最高的生产率:切削速度v = 22.1 m / min。,进给速度s = 0.26 mm / rev;刀具寿命T = 18分钟;净费用–每小时2.45美元。

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