Optics and Precision Engineering, Volume. 33, Issue 10, 1594(2025)
Integrated design and force sensing characteristics of micro-structured precision machining mechanism for electric spindle
[1] GUO Y J, YANG X J, KANG J et al. Ductile machining of single-crystal germanium for freeform surfaces diamond turning based on a long-stroke fast tool servo[J]. Journal of Manufacturing Processes, 82, 615-627(2022).
[2] CHANG K M, CHENG J L, LIU Y T. Machining control of non-axisymmetric aspheric surface based on piezoelectric fast tool servo system[J]. Precision Engineering, 76, 160-172(2022).
[3] PU X N, XU J H, HUANG P et al. Fast tool servo-based ultra-precision diamond sculpturing for fabricating micro-structured surfaces[J]. International Journal of Mechanical Sciences, 263, 108790(2024).
[4] TANG H, LI H C et al. Design and control of a new 3-PUU fast tool servo for complex microstructure machining[J]. The International Journal of Advanced Manufacturing Technology, 94, 3503-3517(2018).
[5] 朱志远, 朱紫辉, 周晓勤. 三轴电磁-压电混合驱动快速刀具伺服的轨迹跟踪控制[J]. 光学 精密工程, 31, 2236-2247(2023).
ZHU Z Y, ZHU Z H, ZHOU X Q et al. Trajectory tracking control for tri-axial fast tool servo using hybrid electromagnetic-piezoelectric actuation[J]. Opt. Precision Eng., 31, 2236-2247(2023).
[6] TAO Y, CHEN Y L, HU P et al. Development of a voice coil motor based fast tool servo with a function of self-sensing of cutting forces[J]. Precision Engineering, 65, 130-137(2020).
[7] WU D, ZHOU S, XIE X. Design and control of an electromagnetic fast tool servo with high bandwidth[J]. IET Electric Power Applications, 5, 217-223(2011).
[8] ZHAO D P, ZHU Z H, HUANG P et al. Development of a piezoelectrically actuated dual-stage fast tool servo[J]. Mechanical Systems and Signal Processing, 144, 106873(2020).
[9] NIU Y H, ZHU Z H, ZHU L M et al. Multiobjective topology optimization for a piezo-actuated fast tool servo[J]. IEEE Transactions on Industrial Electronics, 72, 4612-4622(2025).
[10] 闫鹏, 李金银. 压电陶瓷驱动的长行程快刀伺服机构设计[J]. 光学 精密工程, 28, 390-397(2020).
YAN P, LI J Y. Design of piezo-actuated long-stroke fast tool servo mechanism[J]. Opt. Precision Eng., 28, 390-397(2020).
[11] FENG H H, XIA R S, LI Y Y et al. Fabrication of freeform progressive addition lenses using a self-developed long stroke fast tool servo[J]. The International Journal of Advanced Manufacturing Technology, 91, 3799-3806(2017).
[12] GONG Z, HUO D H, NIU Z Y et al. A novel long-stroke fast tool servo system with counterbalance and its application to the ultra-precision machining of microstructured surfaces[J]. Mechanical Systems and Signal Processing, 173, 109063(2022).
[13] GONG Z, HUO D H, NIU Z Y et al. Investigation of control algorithm for long-stroke fast tool servo system[J]. Precision Engineering, 75, 12-23(2022).
[14] CHEN N, WEN Z C, RONG J T et al. Design, modeling, and testing of a long-stroke fast tool servo based on corrugated flexure units[J]. Micromachines, 15, 1039(2024).
[15] TAMURA Y, YOSHIOKA H, SHINNO H et al. Nano-positioning system using self-sensing function of giant magnetostrictive actuator[J]. Transactions of the JSME (in Japanese), 81, 15-00292(2015).
[16] LIU Z D, LIU W K, WANG P et al. High-precision position tracking control of giant magnetostrictive actuators using fractional-order sliding mode control with inverse Prandtl-ishlinskii compensator[J]. International Journal of Precision Engineering and Manufacturing, 24, 379-393(2023).
[17] YU C F, WANG C L, XIE T et al. Development of drive system of high performance micro positioning worktable based on giant magnetostrictive material[J]. Journal of Mechanical Engineering, 55, 136-143(2019).
喻曹丰, 王传礼, 解甜. 基于GMM的高性能微定位工作台驱动系统的研制[J]. 机械工程学报, 55, 136-143(2019).
[18] CALKINS F T, SMITH R C, FLATAU A B. Energy-based hysteresis model for magnetostrictive transducers[J]. IEEE Transactions on Magnetics, 36, 429-439(2000).
[19] JILES D C. Theory of the magnetomechanical effect[J]. Journal of Physics D Applied Physics, 28, 1537-1546(1995).
[20] MENG A H, YANG J F, JIANG S Q et al. Design and experiments of a column giant magnetostrictive energy harvester[J]. Journal of Vibration and Shock, 36, 175-180(2017).
孟爱华, 杨剑锋, 蒋孙权. 柱棒式超磁致伸缩能量收集器的设计与实验[J]. 振动与冲击, 36, 175-180(2017).
Get Citation
Copy Citation Text
Caofeng YU, Zhiquan CHEN, Deyun WANG, Jianhua ZHU, Yinan NIE. Integrated design and force sensing characteristics of micro-structured precision machining mechanism for electric spindle[J]. Optics and Precision Engineering, 2025, 33(10): 1594
Category:
Received: Feb. 21, 2025
Accepted: --
Published Online: Jul. 23, 2025
The Author Email: Caofeng YU (yucaofeng@aust.edu.cn)