期刊文献+

复杂曲面的五轴加工无干涉刀具路径生成技术研究 被引量:3

Research on Gauging-free Cutter Path Generation Technology of Complex Surfaces
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摘要 基于微分几何理论,对复杂曲面环形刀无干涉刀具路径生成算法进行研究,对复杂曲面进行曲面划分,在此基础上建立环形刀五轴加工模型,进行走刀步长、加工行距和相邻刀触点等的计算,并提出通过选择最佳刀具尺寸和改变刀具姿态进行干涉避免的方法。与其它环形刀刀具路径生成算法相比,本文提出的算法具有更高的准确性和可靠性。 Based on the theory of differential geometry, the five-axis machining gauging-free cutter path generation algorithm of the toroidal Cutter is researched. And five-axis machining model of the toroidal Cutter is built, the calculation of feeding step length, machining interval and adjacent cutter contact points etc. is done based on the division of complex surfaces. Besides, the way of avoid tool interfere is presented by selecting optimum tool sizes and changing tool posture. Comparing with other algorithms, the proposed algorithm in this paper is more precise and reliable.
出处 《组合机床与自动化加工技术》 北大核心 2012年第10期5-9,共5页 Modular Machine Tool & Automatic Manufacturing Technique
基金 太原科技大学研究生科技创新项目(20111019)
关键词 复杂曲面 环形刀 刀具路径 干涉避免 complex surface toroidal cutter tool path gauging-free
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参考文献9

  • 1陈涛,钟毅芳,周济.自由曲面5轴数控加工刀位轨迹的生成算法[J].机械工程学报,2001,37(12):100-103. 被引量:38
  • 2Ahmet Can & Ali 13ntivar. A novel iso-scallop too-path gen- eration for efficient five-axis machining of free-form surfaces[ J ]. Int J Adv Manuf Technol, 2010 (51 ) : 1083 - 1098.
  • 3陈良骥,程俊伟,王永章.环形刀五轴数控加工刀具路径生成算法[J].机械工程学报,2008,44(3):205-212. 被引量:33
  • 4C. G. Jensen, W. E. Red, J. Pi. Tool Selection for five-axis Curvature Matched Machining[ J]. Computer-Aided Design, 2002 (34) :251 - 266.
  • 5M. Javad, Barakchi Fard & Hsi-Yung Feng. Effect of tool tilt angle on machining strip width in five-axis flat-end mill- ing of free-form surfaces [ J]. IntJAdvManufTechnol, 2009 (44) :211 -222.
  • 6Than Lin, Jae-Woo Lee and Erik L. J. Bohez. A new accu- rate curvature matching and optimal tool based five-axis machining algorithm [ J]. Journal of Mechanical Science and Technology, 2009 ( 25 ) :2624 - 2634.
  • 7Yuan-Shin Lee. Non-isoparametric tool path planning by ma- chining strip evaluation for 5-axis sculptured surface machining [ J]. Computer-Aided Design, 1998,30 (7) : 559 - 570.
  • 8C-C. Lo. Efficient cutter-path planning for five-axis surface machining with a flat-end cutter I J]- Computer-Aided Design, 1999,31:557 -566.
  • 9Than Lin, Jae-Woo Lee, Erik L. J. Bohez. A new accurate curvature matching and optimal tool Mechanical Science and Technology, 2009,23:2624- 2634.

二级参考文献15

  • 1Wang Y,International J Advanced Manufacturing Technology,1999年,15卷,1期,7页
  • 2Lin S R,ASME J Engineering Industry,1996年,118卷,20页
  • 3Li S X,Computer Aided Design,1994年,26卷,3期,165页
  • 4Choi B K,Computer Aided Design,1993年,25卷,6期,377页
  • 5Choi B K,Surface modeling for CAD/CAM,1991年
  • 6Vickers G W,J Eng Ind,1989年,111卷,22页
  • 7刘雄伟.数控加工理论与编程技术[M].北京:机械工业出版社,2001..
  • 8DING S, MANNAN M A, POO A N, et al. Adaptive iso-planar tool path generation for machining of free-form surfaces[J]. Computer-Aided Design, 2003, 35: 141-153.
  • 9FENG H Y, LI H W. Constant scallop-height tool path generation for three-axis sculptured surface machining[J]. Computer-Aided Design, 2002, 34. 647-654.
  • 10LEE Y S. Non-isoparametric tool path planning by machining strip evaluation for 5-axis sculptured surface machining[J]. Computer-Aided Design, 1998, 30. 559-570.

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