A Comparative Study on Electroplating of FDM Parts
Electroplating on fused deposition modeling parts through two different routes is presented in the study. One route follows the conventional method of electroplating using chromic acid for surface preparation or etching and the other route uses the novel method of electroplating using aluminium...
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Universitas Indonesia
2017-10-01
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doaj-c8566390bf98421cb3f92379a3f520b32020-11-24T21:38:09ZengUniversitas IndonesiaInternational Journal of Technology2086-96142087-21002017-10-018593093810.14716/ijtech.v8i5.875875A Comparative Study on Electroplating of FDM PartsAzhar Equbal0Md. Israr Equbal1Anoop Kumar Sood2Md. Asif Equbal3Department of Manufacturing Engineering, National Institute of Foundry and Forge Technology, Ranchi 834003, IndiaDepartment of Mechanical engineering, Aurora’s technological and research institute, Uppal, Hyderabad 500098, IndiaDepartment of Manufacturing Engineering, National Institute of Foundry and Forge Technology, Ranchi 834003, IndiaDepartment of Mechanical Engineering, Cambridge Institute of Technology, Ranchi 831005, IndiaElectroplating on fused deposition modeling parts through two different routes is presented in the study. One route follows the conventional method of electroplating using chromic acid for surface preparation or etching and the other route uses the novel method of electroplating using aluminium charcoal (Al-C) paste for surface preparation. Same plating conditions are used for both the routes employed. The result proposes that instead of shell cracking in few electroplated samples, Al-C route is also capable of producing good copper deposition on FDM samples. Cracks may develop in few samples electroplated through Al-C route, because of dissolution of paste at high operating condition during electroplating. Proper drying of electrolessly plated samples and adaptation of suitable operating condition reduces the risk of electroplated shell cracking.http://ijtech.eng.ui.ac.id/article/view/875CrackingDepositionElectroplatingEtchingSurface preparation |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Azhar Equbal Md. Israr Equbal Anoop Kumar Sood Md. Asif Equbal |
spellingShingle |
Azhar Equbal Md. Israr Equbal Anoop Kumar Sood Md. Asif Equbal A Comparative Study on Electroplating of FDM Parts International Journal of Technology Cracking Deposition Electroplating Etching Surface preparation |
author_facet |
Azhar Equbal Md. Israr Equbal Anoop Kumar Sood Md. Asif Equbal |
author_sort |
Azhar Equbal |
title |
A Comparative Study on Electroplating of FDM Parts |
title_short |
A Comparative Study on Electroplating of FDM Parts |
title_full |
A Comparative Study on Electroplating of FDM Parts |
title_fullStr |
A Comparative Study on Electroplating of FDM Parts |
title_full_unstemmed |
A Comparative Study on Electroplating of FDM Parts |
title_sort |
comparative study on electroplating of fdm parts |
publisher |
Universitas Indonesia |
series |
International Journal of Technology |
issn |
2086-9614 2087-2100 |
publishDate |
2017-10-01 |
description |
Electroplating
on fused
deposition modeling parts through two different routes is presented
in the study. One route follows the conventional method of electroplating using
chromic acid for surface preparation or etching and the other route uses the
novel method of electroplating using aluminium charcoal (Al-C) paste for surface
preparation. Same plating conditions are used for both the routes employed. The
result proposes that instead of shell
cracking in few electroplated samples, Al-C route is also capable of
producing good copper deposition on FDM samples. Cracks may develop in few samples electroplated
through Al-C route,
because of dissolution of paste at high operating condition during
electroplating. Proper drying of electrolessly plated samples and adaptation
of suitable operating condition reduces the risk of electroplated shell
cracking. |
topic |
Cracking Deposition Electroplating Etching Surface preparation |
url |
http://ijtech.eng.ui.ac.id/article/view/875 |
work_keys_str_mv |
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