首页> 外文期刊>Aircraft Engineering and Aerospace Technology >Surface roughness optimization in milling operation for aluminum alloy (AI 6061-T6) in aviation manufacturing elements
【24h】

Surface roughness optimization in milling operation for aluminum alloy (AI 6061-T6) in aviation manufacturing elements

机译:航空制造元素铝合金(AI 6061-T6)铣削操作的表面粗糙度优化

获取原文
获取原文并翻译 | 示例
       

摘要

Purpose This paper aims that optimization parameters depending on machining processes examine to define for the milling process of AL 6061-T6 aluminum alloy used in the aviation industry. Design/methodology/approach The Taguchi method was used to study the optimal parameters. Furthermore, the effects of machining parameters on surface roughness were also evaluated by performing variance analysis. Optimum parameter levels were determined by Signal/Noise analysis. Findings It was determined that the parameter levels that optimize the surface roughness were "4000 rev/min for the rotational speed of the cutting tool, 0.4 mm for the cutting depth and the optimum value for the feedrate 500 mm/min." Research limitations/implications It is limited by the precision of the manufacturing processes, the desired geometry and the exactness of the measurement make the machine productivity valuable in the production of parts. Practical implications By improving the optimal production parameters, reducing part production costs and waste amount in aviation has been seen as an important gain. Social implications Improving production methods and optimization parameters in production technologies will ensure the minimization of loss and waste. These developed parameters with optimizing the surface roughness will add value in this context. Originality/value It was determined that the parameter levels that optimize the surface roughness of aluminum considering manufacturing processes. Especially as process parameters, optimum feed rate has been developed for effective rotation speed and cutting depth for cutting tools.
机译:目的本文旨在根据加工过程进行优化参数,检查用于航空工业中使用的Al 6061-T6铝合金的研磨过程。设计/方法/方法TAGUCHI方法用于研究最佳参数。此外,还通过执行方差分析来评估加工参数对表面粗糙度的影响。通过信号/噪声分析确定最佳参数水平。结果确定优化表面粗糙度的参数水平为“切割工具的转速为4000 Rev / min,为切割深度为0.4mm,进给率为500mm / min的最佳值。”研究限制/影响它受到制造工艺的精度的限制,所需的几何形状和测量的准确性使得机器生产率在零件的生产中有价值。通过改善最佳生产参数,减少部分生产成本和航空中的废物的实际意义被视为一个重要的收益。社会影响提高生产技术中的生产方法和优化参数将确保损失和浪费最小化。这些具有优化表面粗糙度的开发参数将在此上下文中添加值。原创性/值是确定了考虑制造过程的铝表面粗糙度的参数水平。特别是作为工艺参数,已经为切割工具的有效转速和切割深度开发了最佳进给速率。

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