• CN:11-2187/TH
  • ISSN:0577-6686

机械工程学报 ›› 2018, Vol. 54 ›› Issue (3): 117-124.doi: 10.3901/JME.2018.03.117

• 数字化设计与制造 • 上一篇    下一篇

复杂曲面通道多轴加工的刀具选择方法

吴宝海, 梁满仓, 张莹, 罗明   

  1. 西北工业大学现代设计与集成制造技术教育部重点实验室 西安 710072
  • 收稿日期:2017-02-11 修回日期:2017-05-19 出版日期:2018-02-05 发布日期:2018-02-05
  • 通讯作者: 吴宝海(通信作者),男,1975年出生,教授。主要研究方向为自由曲面多轴加工、智能加工。E-mail:wubaohai@nwpu.edu.cn
  • 作者简介:梁满仓,男,1994年出生。主要研究方向为复杂曲面的计算机辅助几何设计及多坐标数控加工理论。E-mail:lmc@mail.nwpu.edu.cn
  • 基金资助:
    国家重大科技专项资助项目(2015ZX04001202)。

Tool Selection of Multi-axis Machining for Channel Parts with Sculptured Surface

WU Baohai, LIANG Mancang, ZHANG Ying, LUO Ming   

  1. Key Laboratory of Contemporary Design and Integrated Manufacturing Technology of Ministry of Education, Northwestern Polytechnical University, Xi'an 710072
  • Received:2017-02-11 Revised:2017-05-19 Online:2018-02-05 Published:2018-02-05

摘要: 针对复杂曲面通道零件多轴加工的刀具优化选择问题,提出一种基于点可行空间分析的刀具选择方法。分析了复杂曲面通道多轴加工刀具运动的几何约束,利用临界约束条件对通道加工的临界刀轴进行求解。通过分析单点可达区域与球头刀可行摆刀域之间的关系,提出一种无碰撞干涉条件下的最大刀具直径选择方法;在此基础上,通过对可行摆刀域内刀轴矢量的优化,获得了刀具直径最大条件下的最短刀具长度。以整体叶轮的五轴加工为例,对该方法进行了分析与验证,给出了叶片曲面上最大刀具直径与最短刀具长度的变化情况,并对不同刀具直径的加工效果进行了对比分析。结果表明,本文方法能获得复杂曲面通道类零件多轴加工的最大刀具直径、最小刀具长度,可显著提高该类零件的加工效率及加工稳定性。

关键词: 刀具选择, 复杂曲面通道, 碰撞干涉, 球头刀

Abstract: This paper is devoted to selecting an optimal ball-end tool for machining channel parts with sculptured surface on the multi-axis machining. A method is proposed that based on analyzing the feasible tool orientation of a given single point. Critical tool directions are obtained by establishing and analyzing the mathematic model of cutting tool motion. After researching the differences between visibility direction on the single point and feasible tool orientation of a given ball-end, maximum tool size can be calculated without collision between tool and workpiece. Furthermore, minimum tool length is obtained according to optimize the feasible tool orientation after selecting maximum tool size. Finally, an impeller is machined in a five-axis machining to verify the validity and correctness of the presented approach. Meanwhile, the changes of maximum tool size and minimum tool length on the whole machined surface are given. The machining results used different tools are compared and analyzed. The results suggest that the maximum tool size and minimum tool length can be achieved for machining channel parts with sculptured surface by implementing the developed method, and the machining efficiency and machining stability can be significantly improved.

Key words: ball-end cutter, channel parts with sculptured surface, collision and interference, cutter selection

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