Yan WANG, Jian-bo WANG, Qiang WANG, et al. On-line monitoring of WEDM-LS surface roughness by utilizing time-frequency characteristics of AE signal[J]. Optics and precision engineering, 2017, 25(8): 2090-2097.
DOI:
Yan WANG, Jian-bo WANG, Qiang WANG, et al. On-line monitoring of WEDM-LS surface roughness by utilizing time-frequency characteristics of AE signal[J]. Optics and precision engineering, 2017, 25(8): 2090-2097. DOI: 10.3788/OPE.20172508.2090.
On-line monitoring of WEDM-LS surface roughness by utilizing time-frequency characteristics of AE signal
Aiming at the problem that monitoring of Wire Electrical Discharging Machining-Low Speed (WEDM-LS) process is difficult because of high temperature
narrow kerf and other factors
Acoustic Emission (AE) was adopted to implement on-line monitoring of WEDM-LS process with adjustable duty ratio pulse. Firstly
AE signal was decomposed into eight independent frequency bands by energy spectrum algorithm of wavelet packet
respectively being W1~W8 and frequency reduces in sequence; then energy characteristic of all frequency bands was extracted to research the relativity between it and surface roughness value of machining work-piece. Experimental results show that energy of W8 frequency band is highly related to surface roughness value and energy of this frequency band and pulse discharge energy increase with increase of pulse duty ratio
and roughness value of machining surface increases with it gradually. Finally
a mathematical prediction model between the surface roughness value and the energy in W8 frequency band was established via regression analysis
and error was only 3.51% between prediction result and surface roughness actually measured. It can be illustrated that this model has high prediction precision for online monitoring of machining surface roughness.
HE G M, ZHAO W SH, DONG Y SH, et al.. Factors having effect on geometric precision during EDM[J].Journal of Harbin Institute of Technology, 2000, 32(4):42-45.(in Chinese)
DAHMENE S, YAACOUBI M, MOUNTASSIR M, et al.. On the modal acoustic emission testing of composite structure[J]. Journal Metrics, 2016(7):446-452.
JIANG CH, LI H L.Algorithm and experiment of estimation of time of precision cylindrical plunge grinding based on acoustic emission signal[J]. Journal of Mechanical Engineering, 2014, 50(5):194-200. (in Chinese)
BI G, GUO X Q, SUN ZH J, et al.. Recognition of removal performance of BK7 glass by taking advantages of status signal features[J]. Opt. Precision Eng., 2016, 24(10):394-399. (in Chinese)
JU ZH L, ZHU Y W, WANG J B, et al.. Effect of slurries on chemical mechanical polishing of decorative glasses by fixed-abrasive pad[J]. Opt. Precision Eng., 2013, 21(4):955-962. (in Chinese)
YOSHIAKI A, KAZURO K.Effect of gap region medium on acoustic emission wave by single pulse discharge[J]. Optical Society of America, 2006, 10(4):23-27.
MUTO K, SHIOTA Y, FUTAMURA S. Study on observation of EDM processing and monitoring of discharging point with acoustic emission[C]. Proceedings of the ICEM, 1989:301-304.
WANG Y, YANG L, DING CH C, et al..Simulation and experiments of WEDM-LS based on turncated cone-shaped thermal conduction model[J]. China Mechanical Engineering, 2015, 26(5):598-605+619. (in Chinese)
赵亚利. 慢走丝线切割机床脉冲基准信号发生器的研究与设计[D]. 南昌: 南昌大学, 2009.
ZHAO Y L. The study and design on pulse standard signal generator for LSWEDM[D]. Nanchang:Nanchang University, 2009. (in Chinese)
YANG X D, TENG Q.3D temperature field simulation of wire electrode in WEDM under the moving heat source[J].Electromachining & Mould, 2011(6):7-11. (in Chinese)
YU J X, WANG J SH, HUANG W G.Wavelet package analysis to picking-up characteristics of AE signal of tools[J].Journal of Data Acquisition and Processing, 2005, 20(3):346-350. (in Chinese)
HE Y ZH, SHEN S, YING H Q, et al.. Application of wavelet packet decomposition and its energy spectrum on the fault diagnosis of reciprocation machinery[J]. Journal of Vibration Engineering, 2001, 14(1):72-75. (in Chinese)
DENG Y, DING Y L, LI A Q.Feature extraction of acoustic emission signals for cable damage based on wavelet packet analysis[J]. Journal of Vibration and Shock, 2010, 29(6):155-158+242. (in Chinese)