Posture adaptive control of the flexible grinding head for blisk manufacturing

被引:2
作者
Pengbing Zhao
Yaoyao Shi
机构
[1] Northwestern Polytechnical University,The Key Laboratory of Contemporary Design and Integrated Manufacturing Technology, Ministry of Education
来源
The International Journal of Advanced Manufacturing Technology | 2014年 / 70卷
关键词
Blisk; Grinding process; Pneumatic system; Posture control; Sliding mode control;
D O I
暂无
中图分类号
学科分类号
摘要
In order to improve the machining quality, stability, consistency, and other mechanical properties of the blisk surface, a novel pneumatic flexible grinding head is designed, and working principle, accessible region, and real-time position of the grinding head are analyzed. Considering the influence of nonlinear dead-zone, unknown system function, and uncertain disturbance on the performance of pneumatic servo system, an adaptive sliding mode control (ASMC) based on extended state observer (ESO) is proposed. ESO is employed to estimate the system state variables and an adaptive law is adopted to compensate the input dead-zone. Finally, stability of the closed-loop system is guaranteed by Lyapunov theory. Experimental results illustrate the perfect estimation of ESO, and the proposed ASMC has much stronger anti-interference and robustness compared with the traditional PID control, which can achieve the control precision within submicron. Grinding experiments show that this method can reduce waviness and roughness of the blade surface by nearly 50 %, and decrease the form error by about 22.93 %.
引用
收藏
页码:1989 / 2001
页数:12
相关论文
共 119 条
[11]  
Guo YB(2013)Grinding-aided electrochemical discharge machining of particulate reinforced metal matrix composites Int J Adv Manuf Technol 209 6062-6066
[12]  
Lin X(2013)Multiple-response optimisation of electrochemical grinding characteristics through response surface methodology Int J Adv Manuf Technol 50 1013-1024
[13]  
Tawakoli T(2009)Modeling the abrasive flow machining process on advanced ceramic materials J Mater Process Technol 209 6048-6056
[14]  
Azarhoushang B(2010)Optimum selection of abrasive flow machining conditions during fine finishing of Al/15 wt.% SiC-MMC using Taguchi method Int J Adv Manuf Technol 209 2923-2939
[15]  
Rabiey M(2009)Movement patterns of ellipsoidal particle in abrasive flow machining J Mater Process Technol 268 1002-1012
[16]  
Tawakoli T(2009)Modeling the development of Almen strip curvature in vibratory finishing J Mater Process Technol 271 853-858
[17]  
Azarhoushang B(2010)Numerical modeling of the edge rounding of brittle materials by vibratory finishing Wear 212 2619-2628
[18]  
Rees A(2011)Dependence of the friction coefficient on roughness parameters during early stage fretting of (Al, Ti)N-coated surfaces Wear 33 499-504
[19]  
Brousseau E(2012)Effects of cutting angle, edge preparation, and nanostructured coating on milling performance of a gamma titanium aluminide J Mater Process Technol 64 447-458
[20]  
Dimov SS(2009)Research on chemomechanical grinding of large size quartz glass substrate Precis Eng 35 1090-1099