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Effect of assisted transverse magnetic field on distortion behavior of thin-walled components in WEDM process
作者姓名:Yanming ZHANG  Guojun ZHANG  Zhen ZHANG  Yi ZHANG  Yu HUANG
作者单位:State Key Lab of Digital Manufacturing Equipment & Technology,School of Mechanical Science and Engineering,Huazhong University of Science and Technology,Wuhan 430074,China;Department of Mechanical Engineering,Northwestern University,Evanston 60201,USA;State Key Lab of Digital Manufacturing Equipment & Technology,School of Mechanical Science and Engineering,Huazhong University of Science and Technology,Wuhan 430074,China;School of Aerospace Engineering,Huazhong University of Science and Technology,Wuhan 430074,China;Guangdong HUST Industrial Technology Research Institute,Guangdong Provincial Key Laboratory of Digital Manufacturing Equipment,Dongguan 523808,China;School of Aerospace Engineering,Huazhong University of Science and Technology,Wuhan 430074,China
基金项目:supported by National Natural Science Foundation of China (NSFC) (Nos. 51705171 and 51975228);;Natural Science Foundation of Guangdong (No. 2020A151501638);;the Program of China Scholarship Council (No. 201806160076);
摘    要:Machining performance of thin-walled components made by aeronautical difficult-toprocess materials is a significant issue in the aviation manufacturing industry. Although wire electric discharge machining-low speed(WEDM-LS) is one of typical non-contact machining processes without macro cutting force, which does well in removing hardness and brittleness materials via pulsed discharge at high temperature, but few researchers have studied the thermal distortion behavior leading to a considerable g...

收稿时间:30 July 2020

Effect of assisted transverse magnetic field on distortion behavior of thin-walled components in WEDM process
Yanming ZHANG,Guojun ZHANG,Zhen ZHANG,Yi ZHANG,Yu HUANG.Effect of assisted transverse magnetic field on distortion behavior of thin-walled components in WEDM process[J].Chinese Journal of Aeronautics,2022,35(2):291-307.
Authors:Yanming ZHANG  Guojun ZHANG  Zhen ZHANG  Yi ZHANG  Yu HUANG
Institution:1. State Key Lab of Digital Manufacturing Equipment & Technology, School of Mechanical Science and Engineering, Huazhong University of Science and Technology, Wuhan 430074, China;2. Department of Mechanical Engineering, Northwestern University, Evanston 60201, USA;3. School of Aerospace Engineering, Huazhong University of Science and Technology, Wuhan 430074, China;4. Guangdong HUST Industrial Technology Research Institute, Guangdong Provincial Key Laboratory of Digital Manufacturing Equipment, Dongguan 523808, China
Abstract:Machining performance of thin-walled components made by aeronautical difficult-to-process materials is a significant issue in the aviation manufacturing industry.Although wire electric discharge machining-low speed (WEDM-LS) is one of typical non-contact machining processes without macro cutting force,which does well in removing hardness and brittleness materials via pulsed discharge at high temperature,but few researchers have studied the thermal distortion behavior leading to a considerable geometric error in the WEDM-LS of thin-walled components.In this paper,a transverse magnetic field assisted method is applied for affecting the uniformity of discharge point distribution so as to reduce the distortion in WEDM-LS processing thin-wall component.First,the generation mechanism of this new distortion behavior and the impact mech-anism of transverse magnetic field (TMF) on distortion are demonstrated by theoretical analysis.In order to further figure out the distortion behavior in the TMF-WEDM process,a new thermo-physical model considering the discharge point distribution is established to simulate temperature field,residual stress field and distortion profiles.Then a large number of Taguchi experiments are carried out to investigate the influences of process parameters including pulse discharge energy(pulse on time,pulse off time,and current) and magnetic field strength on distortion in WEDM-LS.To comparatively analyze simulated and experimental results,the accuracy of established thermo-physical model is verified within a relative error of 18.38 % in distortion.Moreover,it can be revealed that transverse magnetic field contribute to significantly improve the longitudinal distribu-tion uniformity with maximum increase of 12.32% at magnetic field strength:0.15 T,leading to sig-nificant reductions of 32.77% in distortion and 22.68% in recast layer.Eventually,we also presented the variation of residual stress and recast layer along thickness direction under different distortion behavior,which are in good agreement with that of distortion behavior.
Keywords:Distortion behavior  Distribution of discharge points  Thin-walled components  Transverse magnetic field  Wire electrical discharge machining
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