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Although the gas metal arc welding (GMAW) process is widely used for joining metals, its planning is still a cumbersome task. The planning procedure involves many complex interrelationships among the process variables and depends heavily on empirical knowledge. Therefore, a solution method that allows a convenient way to represent the domain knowledge and evaluate the process variable relationships is needed. Further, the lack of a strong domain theory to quantify these interrelationships is a deficiency in the planning of the GMAW process. This paper presents a solution method that overcomes this deficiency and introduces a convenient knowledge representation scheme. The solution method considers the planning procedure to be a constraint satisfaction problem (CSP). The AC-4 algorithm is used to obtain arc consistency among nodes in the constraint network and the PC-4 algorithm is applied to obtain path consistency in the network. A modified version of the AC-4 algorithm is developed to reduce the search space and correspondingly reduce the computation time. An example is presented to demonstrate the capability of the method and its potential to reduce lead time. 相似文献
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Interfacial structure and joint strengthening in arc brazed galvanized steels with copper based filler 总被引:2,自引:2,他引:2
1 Introduction Arc brazing is a brazing method that the specimens are heated by arc[1]. It is the generic terms of GMA brazing and GTA brazing[2], and has both the characteristics of brazing and welding. Compared with traditional arc fusion welding, the s… 相似文献
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在熔化极等离子弧焊接(plasma-MIG)试验系统基础上,设计电流、电压信号采集系统,对其电弧电特性信号进行采集,用虚拟仪器软件LabVIEW对其进行处理,得到U-t,I-t,U-I相图.比较了熔化极等离子弧焊与常规熔化极气体保护焊电弧电信号的不同,前者电流、电压波动很小,后者波动很大;研究了熔化极等离子弧焊接方法中MIG电流增大对电弧电信号的影响,并对熔化极等离子弧焊接的不稳定电弧电信号进行了分析,发现内弧对外弧的影响有一定规律性. 相似文献
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The high-speed camera system and data acquisition system of welding parameters were created in tandem MIG welding of high strength aluminum alloy. The experiments were carried out in order to obtain the photos of droplet transfer under different welding parameters in pulsed mode. The droplet transfer mode of ““one pulse one droplet““ becomes the preferred selection during welding process because of its stable procedure and sound weld form. The parameter ranges for corresponding transfer mode were experimentally achieved, among which the stable droplet transfer mode of ““one pulse one droplet““ can be realized. These efforts brave the way for control weld heat input and weld formation in the future. 相似文献
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