TIG焊接电弧控制器的应用综述

A. Paul
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引用次数: 0

摘要

弧焊接头可以利用离散的不同弧焊方法的特点来获得所需的接头特性。弧焊控制器的不断改进有助于重新定义对工艺进行适当参数控制的需求。为了提高效率和生产力,现代电弧控制器可以方便地重新定义工艺的各个方面(例如金属转移,电弧刚度等)。一个令人着迷的结果是完整的多功能弧焊过程虚拟收敛到GMAW。尽管如此,还是有一些应用经常使用SMAW和TIG焊接工艺。与其他焊接方法一样,TIG焊接也由几种派生方法组成。例如,为了制造活性金属(铝或镁)的接头,通常采用交流tig焊接。在这里,电弧控制器的作用是通过电弧间隙产生一致的理想矩形交流电流波形。它可能会在控制器的所有次要侧组件中造成严重的应力(在极性转换期间)。本文利用自主设计的基于外围接口控制器(PIC)的弧焊逆变器,解释了弧焊控制器在处理大多数TIG焊应用问题中的作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Arc Controllers for TIG Welding Applications:A Review
An arc welding joint could utilize the features of discretely different arc welding methods to obtain the desired joint characteristics. The continuous improvement in arc welding controllers has helped redefine the need of proper parametric control of the process. For efficiency and productivity improvement, modern arc controllers come handy to re-define various aspects of the process (e.g. metal transfer, arc stiffness, etc.). One fascinating outcome is the virtual convergence of complete multi-functional arc welding process to GMAW. Still, there are applications where SMAW and TIG welding processes are regularly being used. Like other welding methods, TIG welding, as well, consists of several derivative approaches. For example, for creating joints of reactive metals (aluminum or magnesium), the AC-TIG welding is commonly employed. Here, the role of arc controller is to generate consistent pattern of desirable rectangular shape AC current waveform through the arc gap. It could cause severe stress (during polarity transition) in all secondary side components of the controller. This review, using indigenously designed peripheral interface controller (PIC) based arc welding inverter, explains the role of arc controllers to handle issues of majority of TIG welding applications.
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