Effect of ElectroSpark Process Parameters on the WE43 Magnesium Alloy Deposition Quality
This research aims to investigate the effects of process parameters on the quality of WE43 coatings deposited on homologue substrate by ElectroSpark Deposition (ESD) technology. ESD is new technology used to apply coatings or for the restoration and refurbishment of worn or damaged high valued parts...
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doaj-73e618469b2f42b4b2869877cfd873af2020-11-25T02:36:19ZengMDPI AGApplied Sciences2076-34172019-10-01920438310.3390/app9204383app9204383Effect of ElectroSpark Process Parameters on the WE43 Magnesium Alloy Deposition QualityGilda Renna0Paola Leo1Caterina Casavola2Dipartimento di Meccanica, Matematica e Management (DMMM), Politecnico di Bari, Viale Japigia, 182, 70126 Bari, ItalyInnovation Engineering Department, University of Salento, Via per Arnesano s,n, 73100 Lecce, ItalyDipartimento di Meccanica, Matematica e Management (DMMM), Politecnico di Bari, Viale Japigia, 182, 70126 Bari, ItalyThis research aims to investigate the effects of process parameters on the quality of WE43 coatings deposited on homologue substrate by ElectroSpark Deposition (ESD) technology. ESD is new technology used to apply coatings or for the restoration and refurbishment of worn or damaged high valued parts. The depositions were processed using five different levels of Energy input (Es, Spark Energy). The microstructure of both the base material and deposits cross-section were characterized by optical and scanning electron microscopies. Also, X-ray diffraction technique was used. In addition, stereological studies of the through-thickness heterogeneities of the deposits (e.g., voids) were performed. The mechanical properties were evaluated by Vickers micro-hardness. The results show that the deposits exhibited a fine grained microstructure due to the rapid solidification. The average micro-hardness values of the deposits are lower than that of the substrate and distributed in a small range (49−60 HV). The lower hardness of the deposits respect to the base material is due to the presence of defectiveness such as spherical, laminar and random shaped voids. The defects area percentage inside the deposits remains well below than 11%. All the deposits were mainly affected by laminar morphology defects. The results indicate that the deposits defectiveness decreases as the energy input increases.https://www.mdpi.com/2076-3417/9/20/4383electrospark deposition (esd)coatingsrepairmagnesium alloywe43 alloy |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Gilda Renna Paola Leo Caterina Casavola |
spellingShingle |
Gilda Renna Paola Leo Caterina Casavola Effect of ElectroSpark Process Parameters on the WE43 Magnesium Alloy Deposition Quality Applied Sciences electrospark deposition (esd) coatings repair magnesium alloy we43 alloy |
author_facet |
Gilda Renna Paola Leo Caterina Casavola |
author_sort |
Gilda Renna |
title |
Effect of ElectroSpark Process Parameters on the WE43 Magnesium Alloy Deposition Quality |
title_short |
Effect of ElectroSpark Process Parameters on the WE43 Magnesium Alloy Deposition Quality |
title_full |
Effect of ElectroSpark Process Parameters on the WE43 Magnesium Alloy Deposition Quality |
title_fullStr |
Effect of ElectroSpark Process Parameters on the WE43 Magnesium Alloy Deposition Quality |
title_full_unstemmed |
Effect of ElectroSpark Process Parameters on the WE43 Magnesium Alloy Deposition Quality |
title_sort |
effect of electrospark process parameters on the we43 magnesium alloy deposition quality |
publisher |
MDPI AG |
series |
Applied Sciences |
issn |
2076-3417 |
publishDate |
2019-10-01 |
description |
This research aims to investigate the effects of process parameters on the quality of WE43 coatings deposited on homologue substrate by ElectroSpark Deposition (ESD) technology. ESD is new technology used to apply coatings or for the restoration and refurbishment of worn or damaged high valued parts. The depositions were processed using five different levels of Energy input (Es, Spark Energy). The microstructure of both the base material and deposits cross-section were characterized by optical and scanning electron microscopies. Also, X-ray diffraction technique was used. In addition, stereological studies of the through-thickness heterogeneities of the deposits (e.g., voids) were performed. The mechanical properties were evaluated by Vickers micro-hardness. The results show that the deposits exhibited a fine grained microstructure due to the rapid solidification. The average micro-hardness values of the deposits are lower than that of the substrate and distributed in a small range (49−60 HV). The lower hardness of the deposits respect to the base material is due to the presence of defectiveness such as spherical, laminar and random shaped voids. The defects area percentage inside the deposits remains well below than 11%. All the deposits were mainly affected by laminar morphology defects. The results indicate that the deposits defectiveness decreases as the energy input increases. |
topic |
electrospark deposition (esd) coatings repair magnesium alloy we43 alloy |
url |
https://www.mdpi.com/2076-3417/9/20/4383 |
work_keys_str_mv |
AT gildarenna effectofelectrosparkprocessparametersonthewe43magnesiumalloydepositionquality AT paolaleo effectofelectrosparkprocessparametersonthewe43magnesiumalloydepositionquality AT caterinacasavola effectofelectrosparkprocessparametersonthewe43magnesiumalloydepositionquality |
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