首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part B. Journal of engineering manufacture >Laser cutting optimization model with constraints: Maximization of material removal rate in CO2 laser cutting of mild steel
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Laser cutting optimization model with constraints: Maximization of material removal rate in CO2 laser cutting of mild steel

机译:具有约束的激光切割优化模型:MID钢CO2激光切割材料去除率的最大化

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摘要

Taking full advantage of what laser cutting technology offers in terms of achieving superb quality cuts at low cost and high production rates requires the optimization of laser cutting parameters. This implies the need to formulate and solve different laser cutting optimization problems. In this article, an optimization model for CO2 laser cutting of mild steel is developed. The laser cutting optimization problem was explicitly formulated as a single-objective optimization problem with five non-linear constraints of the equality, inequality and range type. The goal was to determine the laser cutting parameter values so as to maximize the material removal rate while simultaneously considering practical process constraints related to dross formation, kerf width, perpendicularity deviation, surface roughness and severance energy. Two crossed experimental designs of different resolutions were performed in order to define six mathematical models, which were used in the formulation of the optimization problem. For the purpose of optimization, the exhaustive iterative search algorithm was applied, since it determines solutions whose optimality is guaranteed in the given discrete space of input variable values. The practical usability of the developed laser cutting optimization model and the effectiveness of the applied optimization approach were proved while solving a real case study aimed at the optimization of laser cutting parameters for cutting parts for the furnace industry.
机译:充分利用激光切割技术在低成本和高生产率下实现卓越品质的切割,需要优化激光切割参数。这意味着需要制定和解决不同的激光切割优化问题。在本文中,开发了一种用于双模钢的CO2激光切割的优化模型。激光切割优化问题明确地制定为单个客观优化问题,具有五个平等,不等式和范围类型的非线性约束。目标是确定激光切割参数值,以便最大化材料去除率,同时考虑与毛细血管形成,Kerf宽度,垂直偏差,表面粗糙度和断开能量有关的实际过程约束。进行两次交叉的不同分辨率的实验设计,以定义六种数学模型,用于制定优化问题。出于优化的目的,应用了详尽的迭代搜索算法,因为它确定了在输入变量值的给定离散空间中保证了其最优性的解决方案。证明了开发的激光切割优化模型的实际可用性以及应用优化方法的有效性,同时解决了针对炉工业切割零件的激光切削参数优化的实际案例研究。

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