...
首页> 外文期刊>Journal of Materials Processing Technology >A flexible tool selection decision support system for milling operations
【24h】

A flexible tool selection decision support system for milling operations

机译:用于铣削操作的灵活的刀具选择决策支持系统

获取原文
获取原文并翻译 | 示例

摘要

Competitive cutting tool manufacturers are now facing increasing demands to supply a comprehensive advice service with relation to selection of appropriate tools and cutting data for a wide variety of workpiece materials and component geometries. This paper describes the development of methods and a computer based system for automated machinability assessment and tool selection for milling. The system is called OPTIMUM (Optimised Planning of Tooling and Intelligent Machinability evaluation for Milling) and is designed to provide reliable tool selection and cutting data for a range of milling operations. The machinability assessment method employs rule based decision logic and multiple regression techniques to produce feasible initial cutting conditions for a wide range of workpiece materials. A novel feature is that a wide variety of input data is permitted, including imprecise or incomplete workpiece descriptions. The tool selection process features the selection of tools based upon optimised machining performance. A new optimisation criterion related to initial average chip thickness, called harshness, is proposed. Unlike most CAPP systems, a large variety of workpiece materials (more than 750 ferrous alloys) and a comprehensive selection of tools (potentially 35 988 cutter/insert combinations) are considered. A tool variety reduction post processor facilitates the rationalisation of sets of selected tools to produce optimised tool sets for a limited number of available tool positions on a machining centre. The combination of knowledge based logic and statistical methods provide a powerful and flexible support tool for the process planning of milling operations.
机译:竞争激烈的切削工具制造商现在面临着日益增长的需求,即为各种工件材料和零件几何形状的选择合适的工具和切削数据提供全面的咨询服务。本文介绍了用于自动切削性评估和铣削刀具选择的方法和基于计算机的系统的开发。该系统称为OPTIMUM(用于铣削的优化刀具规划和智能机加工性评估),旨在为一系列铣削操作提供可靠的刀具选择和切削数据。可加工性评估方法采用基于规则的决策逻辑和多元回归技术来为各种工件材料产生可行的初始切削条件。一个新颖的特点是允许使用多种输入数据,包括不精确或不完整的工件描述。刀具选择过程基于优化的加工性能来选择刀具。提出了一种与初始平均切屑厚度有关的新优化标准,称为粗糙度。与大多数CAPP系统不同,考虑了多种工件材料(超过750种铁合金)和广泛的工具选择(潜在的35 988个刀具/刀片组合)。减少刀具种类的后处理器有助于合理化所选刀具组,以针对加工中心上有限数量的可用刀具位置生产优化的刀具组。基于知识的逻辑和统计方法的结合为铣削加工的过程规划提供了强大而灵活的支持工具。

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