首页> 外文期刊>Journal of Manufacturing and Materials Processing >The Optimization of Machining Parameters for Milling Operations by Using the Nelder–Mead Simplex Method
【24h】

The Optimization of Machining Parameters for Milling Operations by Using the Nelder–Mead Simplex Method

机译:利用Nelder-Mead Simplex方法优化铣削操作的加工参数

获取原文
           

摘要

The purpose of machining operations is to make specific shapes or surface characteristics for a product. Conditions for machining operations were traditionally selected based on geometry and surface finish requirements. However, nowadays, many researchers are optimizing machining parameters since high-quality products can be produced using more expensive and advanced machines and tools. There are a few methods to optimize the machining process, such as minimizing unit production time or cost or maximizing profit. This research focused on maximizing the profit of computer numerical control (CNC) milling operations by optimizing machining parameters. Cutting speeds and feed are considered as the main process variables to maximize the profit of CNC milling operations as they have the greatest effect on machining operation. In this research, the Nelder–Mead simplex method was used to maximize the profit of CNC milling processes by optimizing machining parameters. The Nelder–Mead simplex method was used to calculate best, worst, and second-worst value based on an initial guess. The possible range of machining parameters was limited by several constraints. The Nelder–Mead simplex method yielded a profit of 3.45 ($/min) when applied to a commonly used case study model.
机译:加工操作的目的是为产品进行特定的形状或表面特性。传统上基于几何和表面光洁度要求选择加工操作的条件。然而,如今,许多研究人员正在优化加工参数,因为可以使用更昂贵和先进的机器和工具生产高质量的产品。有一些方法可以优化加工过程,例如最小化单位生产时间或成本或最大限度地利润。本研究专注于通过优化加工参数来最大限度地提高计算机数控(CNC)铣削操作的利润。切割速度和饲料被认为是主要的过程变量,以最大限度地提高数控铣削操作的利润,因为它们对加工操作具有最大的影响。在本研究中,Nelder-Mead Simplex方法用于通过优化加工参数来最大限度地提高CNC铣削过程的利润。基于初始猜测,使用Nelder-Mead Simplex方法用于计算最佳,最差和第二个最差值。可由多个约束的加工参数范围限制。当应用于常用的案例研究模型时,Nelder-Mead Simplex方法产生了3.45($ / min)的利润。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号