摘要
针对传统微段加工中由于频繁加减速产生的机床振动大、加工效率低及微段节点处速度方向不连续的问题,在计算机数控中采用微段曲线重构技术,对连续微段进行实时样条重构,以实现对曲面的高速高精度插补加工。应用微段插补技术进行的样件数控加工实验中,在保证原曲线加工精度的同时,提高了加工速度。实验结果表明了算法的有效性。
Aiming at Vibration and low machining efficiency caused by frequent acceleration and deceleration(acc/dec),and discontinuity of speed direction of micro line block knot in traditional micro line machining process,a micro line curve reconstruction method was adopted in Computer Numerical Control(CNC)to conduct real-time reconstruction of successive spline curve so as to realize high speed precision interpolation machining.The micro line interpolation algorithm was applied In the sample CNC machining experiment,which speeded up the machining and guaranteed the precision.Experimental result verified the effectiveness of this algorithm.
出处
《计算机集成制造系统》
EI
CSCD
北大核心
2010年第6期1229-1235,共7页
Computer Integrated Manufacturing Systems
基金
上海市教委发展基金资助项目(05AZ23)~~
关键词
曲线重构
微段加工
样条插补
数控系统
计算机辅助设计
curve reconstruction
micro line machining
spline interpolation
numerical control system
computer aided design