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逆变式MIG/MAG焊接电源研究
引用本文:朱旗,肖介光,郭伊永,谭志成,熊健,卢抗美.逆变式MIG/MAG焊接电源研究[J].电焊机,1991(2):6-9.
作者姓名:朱旗  肖介光  郭伊永  谭志成  熊健  卢抗美
作者单位:成都电焊机研究所,成都电焊机研究所,成都电焊机研究所,成都电焊机研究所,成都电焊机研究所,成都电焊机研究所
摘    要:为了充分提高机器人MIG/MAG焊接性能.对于短路过渡焊,有必要将焊接过程分为引孤期和焊接期。在引弧期中充分提高电源响应速度,力求提高引弧成功率和快速建立稳定弧长。在焊接期中采用复合外特性和电子电抗器以提高焊接稳定性和抑制飞溅。其研究结果已用于NZM-400孤焊机器人MIG/MAG焊接系统中。

关 键 词:逆变弧焊电源  MAG焊  MIG焊  焊接电源  焊接机器人

Study on Inverter MIG/MAG Welding Power Source
Chengdu Electric Weding Machine Research Institute Zhu Qi.Study on Inverter MIG/MAG Welding Power Source[J].Electric Welding Machine,1991(2):6-9.
Authors:Chengdu Electric Weding Machine Research Institute Zhu Qi
Affiliation:Chengdu Electric Weding Machine Research Institute Zhu Qi
Abstract:For short circuiting welding, the welding process should be divided into striking and welding in order to fully improve the welding performance of robot MIG/MAG welding. In the striking, the response speed of the power source and the mission success rate of the striking should be fully improved, and the stable arc length should be established quickly. In the welding, the combined outer characteristic and the electronic reactor arc used to improve the welding stability and control the spatter. This research achievement has been used for MIG/MAG welding of NZM-400 arc welding robot system.
Keywords:Inverter arc welding power source MIG/MAG welding
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