Matches in SemOpenAlex for { <https://semopenalex.org/work/W1998933851> ?p ?o ?g. }
- W1998933851 abstract "The aim of this study was to investigate adaptive pulsed GMAW processes, considering possible benefits when welding thicker sections (> 3 mm) and structural steel. Adaptive pulsed GMAW processes are adaptive in that electrode feed speed is automatically adjusted and corrected to the mean pulsed current or voltage variation. In addition, current and voltage waveforms and welding parameters are modified to improve control of repeated peak and background values occurring during pulsed GMAW. The study experimentally tested the usability of adaptive welding processes and evaluated effects on weld properties, penetration and shape of the weld bead. The study first briefly reviewed adaptive GMAW to evaluate different approaches and their applications and to identify the benefits of adaptive pulsed GMAW. The literature shows that better control of current waveform and use of advanced power sources successfully improved welding quality of thin sheet metal. To assess applicability with thicker sheet metal (5 mm) experiments were then per-formed using Synergic GMAW, Synergic Pulsed GMAW and WiseFusionTM to weld a fillet weld (PB position). The air gap between the parts ranged from 0 to 2.5 mm. The base materials were structural steel grade S355MC, 5 mm thickness, and filler material G3Si1. The experiment inves-tigated heat input, mechanical properties and microstruc-ture of the welded joint.The WiseFusionTM bead had the highest dilution of the processes tested, due to the weld bead shape, and the weld showed low defects such as porosity, undercut, and excessive or lack of reinforcement.It was concluded that adaptive pulsed GMAW processes can be a favoured choice when welding struc-tures with many welded joints. The total heat reduction mitigates residual stresses and the bead shape allows a higher amperage limit. The stability of the arc during the process is virtually spatter free and allows an increase in welding speed.DOI: http://dx.doi.org/10.5755/j01.mech.19.6.6003" @default.
- W1998933851 created "2016-06-24" @default.
- W1998933851 creator A5002457292 @default.
- W1998933851 creator A5044977211 @default.
- W1998933851 creator A5055221854 @default.
- W1998933851 creator A5080380649 @default.
- W1998933851 date "2014-01-07" @default.
- W1998933851 modified "2023-10-02" @default.
- W1998933851 title "Applications and benefits of adaptive pulsed GMAW" @default.
- W1998933851 cites W1549050369 @default.
- W1998933851 cites W1560577653 @default.
- W1998933851 cites W1972337999 @default.
- W1998933851 cites W1993004299 @default.
- W1998933851 cites W2009023234 @default.
- W1998933851 cites W2025025524 @default.
- W1998933851 cites W2031975757 @default.
- W1998933851 cites W2032429039 @default.
- W1998933851 cites W2039105124 @default.
- W1998933851 cites W2041315850 @default.
- W1998933851 cites W2051458957 @default.
- W1998933851 cites W205470333 @default.
- W1998933851 cites W2056042325 @default.
- W1998933851 cites W2064231053 @default.
- W1998933851 cites W2065409243 @default.
- W1998933851 cites W2068950804 @default.
- W1998933851 cites W2069512420 @default.
- W1998933851 cites W2070462219 @default.
- W1998933851 cites W2071773569 @default.
- W1998933851 cites W2072202044 @default.
- W1998933851 cites W2081712684 @default.
- W1998933851 cites W2106039758 @default.
- W1998933851 cites W2170773835 @default.
- W1998933851 cites W227666559 @default.
- W1998933851 cites W2484510171 @default.
- W1998933851 cites W2523526314 @default.
- W1998933851 cites W3044962654 @default.
- W1998933851 cites W3084000160 @default.
- W1998933851 cites W3191198179 @default.
- W1998933851 cites W3195230764 @default.
- W1998933851 cites W565348043 @default.
- W1998933851 cites W579021067 @default.
- W1998933851 cites W584082213 @default.
- W1998933851 cites W589265192 @default.
- W1998933851 cites W603354216 @default.
- W1998933851 cites W604877741 @default.
- W1998933851 cites W64841216 @default.
- W1998933851 cites W659087825 @default.
- W1998933851 cites W1247036096 @default.
- W1998933851 cites W1526016833 @default.
- W1998933851 cites W2342131684 @default.
- W1998933851 cites W2463041079 @default.
- W1998933851 cites W2475969283 @default.
- W1998933851 cites W2501621256 @default.
- W1998933851 doi "https://doi.org/10.5755/j01.mech.19.6.6003" @default.
- W1998933851 hasPublicationYear "2014" @default.
- W1998933851 type Work @default.
- W1998933851 sameAs 1998933851 @default.
- W1998933851 citedByCount "2" @default.
- W1998933851 countsByYear W19989338512021 @default.
- W1998933851 countsByYear W19989338512022 @default.
- W1998933851 crossrefType "journal-article" @default.
- W1998933851 hasAuthorship W1998933851A5002457292 @default.
- W1998933851 hasAuthorship W1998933851A5044977211 @default.
- W1998933851 hasAuthorship W1998933851A5055221854 @default.
- W1998933851 hasAuthorship W1998933851A5080380649 @default.
- W1998933851 hasBestOaLocation W19989338511 @default.
- W1998933851 hasConcept C146868986 @default.
- W1998933851 hasConcept C159985019 @default.
- W1998933851 hasConcept C191897082 @default.
- W1998933851 hasConcept C192562407 @default.
- W1998933851 hasConcept C19474535 @default.
- W1998933851 hasConcept C20480867 @default.
- W1998933851 hasConcept C2776143536 @default.
- W1998933851 hasConcept C2779292183 @default.
- W1998933851 hasConcept C3450827 @default.
- W1998933851 hasConcept C50916996 @default.
- W1998933851 hasConceptScore W1998933851C146868986 @default.
- W1998933851 hasConceptScore W1998933851C159985019 @default.
- W1998933851 hasConceptScore W1998933851C191897082 @default.
- W1998933851 hasConceptScore W1998933851C192562407 @default.
- W1998933851 hasConceptScore W1998933851C19474535 @default.
- W1998933851 hasConceptScore W1998933851C20480867 @default.
- W1998933851 hasConceptScore W1998933851C2776143536 @default.
- W1998933851 hasConceptScore W1998933851C2779292183 @default.
- W1998933851 hasConceptScore W1998933851C3450827 @default.
- W1998933851 hasConceptScore W1998933851C50916996 @default.
- W1998933851 hasIssue "6" @default.
- W1998933851 hasLocation W19989338511 @default.
- W1998933851 hasOpenAccess W1998933851 @default.
- W1998933851 hasPrimaryLocation W19989338511 @default.
- W1998933851 hasRelatedWork W1975448986 @default.
- W1998933851 hasRelatedWork W1998933851 @default.
- W1998933851 hasRelatedWork W2089625561 @default.
- W1998933851 hasRelatedWork W2359145746 @default.
- W1998933851 hasRelatedWork W2373628957 @default.
- W1998933851 hasRelatedWork W2393788576 @default.
- W1998933851 hasRelatedWork W2807553649 @default.
- W1998933851 hasRelatedWork W2893213138 @default.
- W1998933851 hasRelatedWork W4233802031 @default.
- W1998933851 hasRelatedWork W43928331 @default.