南京航空航天大学机电学院,南京,210016
网络首发:2012-02-10,
纸质出版:2012
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赵鹏 1, 楼佩煌 1, 刘明灯 2, 等. 实轴空间综合约束下的数控加工速度前瞻策略[J]. 西安交通大学学报, 2012,46(2):64-69.
CNC Machining Velocity Look-Ahead Strategy Restricted by Machine Axis Drive Ability[J]. 2012, 46(2): 64-69.
为了避免数控高速加工中由高曲率区域引起的机床驱动轴的运动突变、机床振动和工件过切
提出了基于实轴空间综合约束的数控加工速度前瞻控制策略.该方法应用切削运动的S形曲线速度规划方案
对机床实轴运动数据进行速度、加速度、冲击约束检测
整体提前寻优确定S形速度前瞻的过程参数
并提出了速度规划节点分离法对切削路径进行分段独立S形曲线速度的规划.仿真和试验表明
采用该方法进行速度前瞻处理时
可使加工速度平滑连续
不仅消除了各驱动轴运动突变引起的冲击振动
而且有效地解决了五轴数控加工中的速度控制问题
因此降低了曲面轮廓误差
满足了高速高精度的加工要求.
In high curvature region of high speed computer numerical control(CNC)machining
machine axis motion shock
mechanical vibration and cutting overshoots often occur. A novel CNC machining velocity look-ahead strategy based on machine axis drive ability constriction is proposed. The S-curve velocity planning is utilized
and the velocity planning parameters are achieved by checking the velocity
acceleration and jerk of the rotate axis and linear axis on the tool path. Then a velocity control node subsection is suggested to divide the cutting path into independent sections to implement the velocity planning independently. The simulation and experiments demonstrate that the strategy enables to smooth the cutting motions and obviously improve the machining surface quality
and 5-axis CNC velocity control is thus effectively solved to meet the high performance requirements in free-form surface machining.
任锟,傅建中,陈子辰.高速加工中速度前瞻控制新算法研究 [J].浙江大学学报(工学版),2006,40(11):1985-1988.
REN Kun, FU Jianzhong, CHEN Zichen. New look-ahead algorithm for velocity control in high speed machining [J]. Journal of Zhejiang University(Engineering Science), 2006, 40(11): 1985-1988.
郑魁敬,钟海娜.5轴联动数控系统速度控制方法 [J].计算机集成制造系统,2007,13(5):158-163.
ZHENG Kuijing, ZHONG Haina. Velocity control method of 5-axis simultaneous computerized numerical control system [J]. Computer Integrated Manufacturing Systems, 2007,13(5): 158-163.
ERKORKMAZ K, ALTINTAS Y. High speed CNC system design: part I Jjerk limited trajectory generation and quintic spline interpolation [J]. Machine Tools Manufacture, 2001,41(9):1323-1345.
XU R Z, XIE L, LI C X, et al. Adaptive parametric interpolation scheme with limited acceleration and jerk values for NC machining [J]. Advanced Manufacturing Technology, 2008,36(3/4): 353-354.
WANG X, WANG J, RAO Z. An adaptive parametric interpolator for trajectory planning [J]. Advances in Engineering Software,2010,41(2):180-187.
石川,赵彤,叶佩青,等.数控系统S曲线加减速规划研究 [J].中国机械工程,2007,18(12):1421-1425.
SHI Chuan, ZHAO Tong, YE Peiqing, et al. Study on S-shape curve acceleration and deceleration control on NC system[J]. China Mechanical Engineering, 2007,18(12): 1421-1425.
LIN K Y, UENG W D, LAI J Y. CNC codes conversion from linear and circular paths to NURBS curves [J]. Advanced Manufacturing Technology, 2008,39(7/8): 760-773.
YEH S S, SU H C. Implementation of online NURBS curve fitting process on CNC machines [J]. Advanced Manufacturing Technology, 2009,40(5/6): 531-540.
赵鹏,楼佩煌,刘明灯,等.基于NURBS曲线拟合的刀具路径优化方法 [J]. 计算机集成制造系统, 2011, 17(7): 1449-1455.
ZHAO Peng, LOU Peihuang, LIU Mingdeng, et al. Tool optimization method based on NURBS curve fitting [J]. Computer Integrated Manufacturing Systems, 2011, 17(7): 1449-1455.
梁宏斌,王永章,李霞. 自动调节进给速度的NURBS插补算法的研究与实现 [J]. 计算机集成制造系统, 2006, 12(3):428-433.
LIANG Hongbin, WANG Yongzhang, Li Xia. Research and implementation of NURBS interpolation algorithm for adaptive feed speed [J]. Computer Integrated Manufacturing System, 2006, 12(3):428-433.
张得礼,周来水.数控加工运动的平滑处理 [J].航空学报,2006,27(1):125-131.
ZHANG Deli, ZHOU Laishui. Adaptive algorithm for feedrate smoothing of high speed machining [J]. Acta Aeronautica et Astonautica Sinica, 2006,27(1):125-130.
SEKAR M, NARAYANAN V N, YANG S H. Design of jerk bounded federate with ripple effect for adaptive NURBS interpolator [J]. Advanced Manufacturing Technology,2008,37(5/6): 545-552.
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