Training of argon arc welding process for tube aluminum busbar melting pole in UHV power station

The development of power grid is showing that voltage level is from low to high, networking scale is from small to large, level of automation is from weak to strong.. [1] as the hub of power grid connection between substations, the capacity and automation level of substations is also improving. The...

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Main Author: Liyang Hanyang
Format: Article
Language:English
Published: EDP Sciences 2018-01-01
Series:MATEC Web of Conferences
Online Access:https://doi.org/10.1051/matecconf/201817503010
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spelling doaj-659ce59809a948808d8134dbd774db132021-02-02T02:30:51ZengEDP SciencesMATEC Web of Conferences2261-236X2018-01-011750301010.1051/matecconf/201817503010matecconf_ifcae-iot2018_03010Training of argon arc welding process for tube aluminum busbar melting pole in UHV power stationLiyang HanyangThe development of power grid is showing that voltage level is from low to high, networking scale is from small to large, level of automation is from weak to strong.. [1] as the hub of power grid connection between substations, the capacity and automation level of substations is also improving. The large diameter and thick walled tubular busbars of substations have been widely applied. Because of the wide application of tubular aluminum busbar, its welding quality has affected the overall quality of the power plant. Therefore, it is an effective way to improve welding level of power station busbar by scientifically making technological measures and welding codes and carrying out adaptive training for welding operators. In view of the feasibility of the argon arc welding (MIG) welding process and the feasibility of training for the tubular aluminum busbar of UHV power station, the characteristics of the welding technology of tubular aluminum busbar and the technological measures taken by the welding technicians are discussed.https://doi.org/10.1051/matecconf/201817503010
collection DOAJ
language English
format Article
sources DOAJ
author Liyang Hanyang
spellingShingle Liyang Hanyang
Training of argon arc welding process for tube aluminum busbar melting pole in UHV power station
MATEC Web of Conferences
author_facet Liyang Hanyang
author_sort Liyang Hanyang
title Training of argon arc welding process for tube aluminum busbar melting pole in UHV power station
title_short Training of argon arc welding process for tube aluminum busbar melting pole in UHV power station
title_full Training of argon arc welding process for tube aluminum busbar melting pole in UHV power station
title_fullStr Training of argon arc welding process for tube aluminum busbar melting pole in UHV power station
title_full_unstemmed Training of argon arc welding process for tube aluminum busbar melting pole in UHV power station
title_sort training of argon arc welding process for tube aluminum busbar melting pole in uhv power station
publisher EDP Sciences
series MATEC Web of Conferences
issn 2261-236X
publishDate 2018-01-01
description The development of power grid is showing that voltage level is from low to high, networking scale is from small to large, level of automation is from weak to strong.. [1] as the hub of power grid connection between substations, the capacity and automation level of substations is also improving. The large diameter and thick walled tubular busbars of substations have been widely applied. Because of the wide application of tubular aluminum busbar, its welding quality has affected the overall quality of the power plant. Therefore, it is an effective way to improve welding level of power station busbar by scientifically making technological measures and welding codes and carrying out adaptive training for welding operators. In view of the feasibility of the argon arc welding (MIG) welding process and the feasibility of training for the tubular aluminum busbar of UHV power station, the characteristics of the welding technology of tubular aluminum busbar and the technological measures taken by the welding technicians are discussed.
url https://doi.org/10.1051/matecconf/201817503010
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