优化计算机数控等离子切割机的切割面

Nurhafizathul Shamsiah Jamsari, Zhi Xian Lim, Cheng Siong Lim, Kok Yeow You, Michael Loong Peng Tan
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引用次数: 0

摘要

本文讨论了一个系统的设计,该系统采用 Jaya 算法处理参数设置,使计算机数控(CNC)等离子切割机达到最佳切割质量。目的是获得数控等离子机的最优参数设置,重点是应用于常用金属、304 不锈钢和 S235 的等离子切割方法。调查的重点是了解这些参数对表面粗糙度(Ra)和锥角的影响。实验采用全因子设计(FFD),通过回归法建立数学预测模型,每个参数在 12 毫米 S235 钢板和 304 不锈钢板上有三个可控水平。Jaya 算法以其在工程优化中的高效率而著称,其运行原则是趋向积极的结果,同时避免不利的结果。这项研究的与众不同之处在于使用了 Jaya 算法,这是一种复杂的优化工具,只需 15 次迭代就能达到最佳解决方案,显示出非凡的效率。通过比较分析,Jaya 算法的强大性能得到了凸显,它比其他技术更胜一筹,能在显著减少迭代次数的情况下提供最佳的最优解。
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The Optimization of Cut Surface for Computer Numerical Control Plasma Cutting Machine
This paper discusses a system designed to process parameter settings for achieving optimum cutting quality by a Computer Numerical Control (CNC) Plasma Machine, employing the Jaya algorithm. The aim is to obtain the most optimized parameter settings for the CNC Plasma Machine, focusing on the plasma cutting method applied to commonly used metals, 304 stainless steels, and S235. The investigation centres on understanding the impacts of these parameters on surface roughness (Ra) and tapper angle. The experiments, conducted using Full Factorial Design (FFD), involved mathematical prediction models developed through a regression method with three controllable levels for each parameter on 12mm S235 steel and 304 stainless steel plates. The Jaya algorithm, known for its efficiency in engineering optimization, operates on the principle of gravitating towards positive outcomes while avoiding unfavorable ones. What sets this study apart is the utilization of the Jaya algorithm, a sophisticated optimization tool that demonstrated exceptional efficiency by converging to the optimum solution within a mere 15 iterations. The Jaya algorithm’s robust performance was highlighted through a comparative analysis, positioning it as superior to alternative techniques for delivering the best optimum solution in a remarkably reduced number of iterations.
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