帮助 关于我们

返回检索结果

复杂曲面五轴数控加工刀轴矢量优化方法研究
Method Study on Optimization of Tool Axis Vector for Complex Surface of 5-Axis CNC

查看参考文献11篇

文摘 现有的五轴加工轨迹生成方法在处理加工过程中的曲面形状突变及干涉情况时,会在前后加工点处产生刀轴矢量的剧烈变化,这将不可避免地造成刀具的破损并直接影响加工质量,解决这一问题的常用方法是生成刀轴光顺轨迹。针对光顺刀轴矢量的生成问题,该方法首先在非干涉域内有效插入限定的加工点位,保证刀轴矢量的整体优化;同时在干涉域内采用改进的C-Space法,生成刀轴矢量光顺可行域。实例表明,将该方法应用在复杂型面的加工中可以有效地生成光顺刀轴矢量、高效处理加工过程中全局及局部干涉情况,避免过切加工的同时不增加加工点的数目,实现了刀轴矢量的优化。
其他语种文摘 Dealing with existing work in the mutation and obstacles of sculpture surfaces, the tool shaft often required to make drastic changes in its orientation between two neighboring contact points. This will inevitably cause tool damage and a direct impact on the processing quality. The usual solution to this problem is to smooth the tool path in the configuration space. The method which proposed here is a simple and effective tool axis vector optimization method. It will first insert interpolation points in the non-interference region within the effective processing to ensure that the overall optimization of the tool axis vector. In the meantime to improve the C-space method in the interference region, the tool axis vector smoothing the feasible region will be generated. Examples show that this method can effectively generate complex surface machining tool axis vectors, high-activity handling the processing of global and local interference situation, avoid overcut and not increase the number of processing points, achieve the optimization of tool axis vectors.
来源 机械工程学报 ,2013,49(7):184-192 【核心库】
DOI 10.3901/jme.2013.07.184
关键词 复杂曲面 ; 五轴数控加工 ; 刀轴矢量 ; 可行域
地址

中国科学院沈阳自动化研究所, 沈阳, 110016

语种 中文
文献类型 研究性论文
ISSN 0577-6686
学科 自动化技术、计算机技术
基金 国家重点基础研究发展计划(973计划) ;  国家自然科学基金资助项目
文献收藏号 CSCD:4815872

参考文献 共 11 共1页

1.  Rahman M. Positioning accuracy improvement in five-axis milling by post processing. International Journal of Machine Tools and Manufacture,1997,37(2):223-226 被引 5    
2.  Jun C S. Optimizing tool orientations for 5-axis machining by configuration-space search method. Computer-Aided Design,2003,35(6):549-566 被引 35    
3.  Beudaert X. 5-Axis tool path smoothing based on drive constraints. International Journal of Machine Tools and Manufacture,2011,51(12):958-965 被引 13    
4.  毕庆贞. 刀触点网格上整体光顺五轴数控加工刀轴方向的模型与算法. 中国科学:技术科学,2010,40(10):1159-1168 被引 14    
5.  Ho M C. Five-axis tool orientation smoothing using quaternion interpolation algorithm. International Journal of Machine Tool and Manufacture,2003,43(12):1259-1267 被引 38    
6.  Wang Nan. Automatic generation of gouge-free and angular-velocity-compliant five-axis toolpath. Computer-Aided Design,2007,39(10):849-852 被引 6    
7.  Castagnetti C. The domain of admissible orientation concept: A new method for five-axis tool path optimization. Computer-Aided Design,2008,40(9):938-950 被引 26    
8.  Lavernhea S. Optimization of 5-axis high-speed machining using a surface based approach. Computer-Aided Design,2008,40(10/11):1015-1023 被引 7    
9.  张鸣. 基于自由区域的环切轨迹优化连接方法. 中国机械工程,2011,22(4):468-473 被引 4    
10.  Li L L. Generating tool-path with smooth posture change for five-axis sculptured surface machining based on cutter's accessibility map. Advanced Manufacturing Technology,2011,53(5/8):699-709 被引 7    
11.  Choi B K. Sculptured surface machining,1998 被引 5    
引证文献 7

1 黄志东 双曲面加工干涉区域分析 农业机械学报,2014,45(4):322-326,321
被引 1

2 蔺小军 基于点搜索组合曲面清根加工轨迹优化算法 机械工程学报,2014,50(19):191-198
被引 2

显示所有7篇文献

论文科学数据集
PlumX Metrics
相关文献

 作者相关
 关键词相关
 参考文献相关

版权所有 ©2008 中国科学院文献情报中心 制作维护:中国科学院文献情报中心
地址:北京中关村北四环西路33号 邮政编码:100190 联系电话:(010)82627496 E-mail:cscd@mail.las.ac.cn 京ICP备05002861号-4 | 京公网安备11010802043238号