Modeling,Identification and Simulation of DC Resistance Spot Welding Process for Aluminum Alloy 5182

来源 :Journal of Shanghai Jiaotong University(Science) | 被引量 : 0次 | 上传用户:yanyuhan66
下载到本地 , 更方便阅读
声明 : 本文档内容版权归属内容提供方 , 如果您对本文有版权争议 , 可与客服联系进行内容授权或下架
论文部分内容阅读
Currently the aluminum alloy resistance spot welding(AA-RSW) has been extensively used for light weight automotive body-in-white manufacturing.However the aluminum alloys such as AA5182 have inferior weldability for forming the joint due to their high reflectiveness to heat and light.Therefore it is necessary to further develop the high performance control strategy and the set-up of a new welding schedule.The welding process identification is the essential issue where the difficulty arises from the fact that the AA-RSW is a nonlinear time-varying uncertain process which couples the thermal,electrical,mechanical and metallurgical dynamics.To understand this complicated physical phenomenon a novel dual-phase M-series pseudo-random electrical pattern is adopted to excite the AA-RSW electrical-thermal process and the thermal response is recorded according to the welding power outputs.Based on the experimental information,the transfer function of an AA-RSW electrical- thermal mechanism is identified,and the optimum model order and parameters are determined.Subsequently a control-oriented DC AA-RSW model is established to explore the welding power control algorithm.The simulated results of the control model show agreement with the experimental data,which validates its feasibility for the corresponding welding control. Currently the aluminum alloy resistance spot welding (AA-RSW) has been extensively used for light weight automotive body-in-white manufacturing. Host the aluminum alloys such as AA5182 have inferior weldability for forming the joint due to their high reflectiveness to heat and light .Therefore it is necessary to further develop the high performance control strategy and the set-up of a new welding schedule. The welding process identification is the essential issue where the difficulty arises from the fact that the AA-RSW is a nonlinear time-varying uncertain process which couples the thermal, electrical, mechanical and metallurgical dynamics. Understanding this complicated physical phenomenon a novel dual-phase M-series pseudo-random electrical pattern is adapted to excite the AA-RSW electrical-thermal process and the thermal response is recorded according to the welding power outputs. Based on the experimental information, the transfer function of an AA-RSW electrical-thermal mechanism is i dentified, and the optimum model order and parameters are determined. Subtracted a control-oriented DC AA-RSW model is established to explore the welding power control algorithm. The simulated results of the control model show agreement with the experimental data, which validates its feasibility for the corresponding welding control.
其他文献
本文对张仲景论述的“眩晕”证进行方药疏理,通过分析条文及制方特点,按“饮在胸中,饮在心下,饮在脐下”的病位探讨其痰饮眩晕的病机、治法、方药.
鸡西矿业集团公司张辰煤矿西三采区3
期刊
众所周知,越狱后的iOS设备,可以在网上下载破解后的App程序,并且免费畅玩。所以很多朋友在APP Store找到自己感兴趣的App程序后,会到处搜寻该App程序网上破解包。但是,这样会费时又费力,并且不一定很多好的破解包国内并没有明确的下载地址。从而,网上经常会遇见出现求某款App程序的求助帖。其实,大可不必如此较真,我们只需借助使用apptrackr.org.InstallOUS数据库快速查询
鸡西矿业集团公司张辰煤矿西三采区3
期刊