AbstractStandard Gas Metal Arc Welding (Standard GMAW) and a high power Tandem GMAW (TGMAW) process are evaluated with respect to energy efficiency. Current, voltage and overall equipment power are measured and energy consumption is determined. The new key performance indicator Electrical Deposition Efficiency is introduced to reflect the energy efficiency of GMAW processes. Additionally, wall-plug efficiency of the equipment is determined in order to identify the overall energy consumption. Results show that energy efficiency as well as economic process performance can be significantly increased by application of the TGMAW process. Furthermore findings indicate that wall-plug efficiency of the equipment is independent of power level and ma...
Wire arc additive manufacturing (WAAM) by gas metal arc welding (GMAW) is a suitable option for the ...
This paper presents the results of a research related to the impact of electric arc activation onto ...
Installation of new pipelines is predicted to grow at a rapid rate over the next twenty years, due i...
Standard Gas Metal Arc Welding (Standard GMAW) and a high power Tandem GMAW (TGMAW) process are eval...
AbstractStandard Gas Metal Arc Welding (Standard GMAW) and a high power Tandem GMAW (TGMAW) process ...
The aim of this study was to review the literature on published arc efficiency values for GTAW and, ...
Environmental concerns have driven manufactures to look for alternative materials like aluminium tha...
A new method of supplying shielding gases in an alternating manner has been developed to enhance the...
The demand for new and reliable welding processes comes from the need to improve productivity and qu...
The work is devoted to energy saving during arc manual welding operations. Power sources for arc man...
The aim of this study was to review the literature that specifies arc efficiency values for gas tung...
The present work has as main objective to evaluate the thermal efficiency of the MIG/MAG weld proce...
Abstract: It is of great practical significance to improve welding production efficiency by modifyin...
Abstract Gas Shielded Tungsten Arc Welding (GTAW) – a process well-known providing highest quality w...
This paper evaluates the use of a modern welding power source equipped with advanced arc control fun...
Wire arc additive manufacturing (WAAM) by gas metal arc welding (GMAW) is a suitable option for the ...
This paper presents the results of a research related to the impact of electric arc activation onto ...
Installation of new pipelines is predicted to grow at a rapid rate over the next twenty years, due i...
Standard Gas Metal Arc Welding (Standard GMAW) and a high power Tandem GMAW (TGMAW) process are eval...
AbstractStandard Gas Metal Arc Welding (Standard GMAW) and a high power Tandem GMAW (TGMAW) process ...
The aim of this study was to review the literature on published arc efficiency values for GTAW and, ...
Environmental concerns have driven manufactures to look for alternative materials like aluminium tha...
A new method of supplying shielding gases in an alternating manner has been developed to enhance the...
The demand for new and reliable welding processes comes from the need to improve productivity and qu...
The work is devoted to energy saving during arc manual welding operations. Power sources for arc man...
The aim of this study was to review the literature that specifies arc efficiency values for gas tung...
The present work has as main objective to evaluate the thermal efficiency of the MIG/MAG weld proce...
Abstract: It is of great practical significance to improve welding production efficiency by modifyin...
Abstract Gas Shielded Tungsten Arc Welding (GTAW) – a process well-known providing highest quality w...
This paper evaluates the use of a modern welding power source equipped with advanced arc control fun...
Wire arc additive manufacturing (WAAM) by gas metal arc welding (GMAW) is a suitable option for the ...
This paper presents the results of a research related to the impact of electric arc activation onto ...
Installation of new pipelines is predicted to grow at a rapid rate over the next twenty years, due i...