Experiment design with full factorial in gas tungsten arc welding parameters on aluminium alloy 5083

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Publication Details

Author listPeasura P.

PublisherTrans Tech Publications

Publication year2013

Volume number711

Start page183

End page187

Number of pages5

ISBN9783037856970

ISSN1022-6680

eISSN1662-8985

URLhttps://www.scopus.com/inward/record.uri?eid=2-s2.0-84880353363&doi=10.4028%2fwww.scientific.net%2fAMR.711.183&partnerID=40&md5=65c4fe2aaf55d5879325f9399f394100

LanguagesEnglish-Great Britain (EN-GB)


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Abstract

This research was to study of gas tungsten arc welding (GTAW) welding parameters that affects to the mechanical properties of aluminum alloy AA5083 welding with GTAW. The full factorial design was experiment. The factors was study in type of polarity on alternating current (AC), direct current electrode negative (DCEN) and direct current electrode positive (DCEP), levels of welding current for 180,200,220 and 240 amp. The specimen to analyses the physical properties has microstructure and hardness of weld metal and heat affected zone. The result showed that type of welding current and levels of welding current interaction hardness at the level of confidence 95% (P-value<0.05). The factor hardness maximum of weld metal was alternating current at level of current 240 amp. and hardness of 136.53 HV. The factor hardness maximum of HAZ value was alternating current at level of welding 220 amp. and hardness of 169.43 HV. The welding parameters can result in increasing Mg2Si intensity in parent phase. It can also be observed that Mg2Si at the parent phase decreased due to high welding current in HAZ.This research can be used as information in choosing how to welding parameter for gas tungsten arc welding of aluminum alloy. ฉ (2013) Trans Tech Publications, Switzerland.


Keywords

Aluminum alloy 5083Gas tungsten arc welding


Last updated on 2023-06-10 at 07:35