Electroless nickel fabrication on surface modified magnesium substrates

In recent years, magnesium (Mg) has evolved as a salient material, in affiliation with electroless nickel (Ni) coating, which have found applications in automobiles, aerospace and confederate fields attributing to its excellent inherent weight sensitive properties. However, being acknowledged for it...

Full description

Bibliographic Details
Main Authors: Ayushi Thakur, Swaroop Gharde, Balasubramanian Kandasubramanian
Format: Article
Language:English
Published: KeAi Communications Co., Ltd. 2019-08-01
Series:Defence Technology
Online Access:http://www.sciencedirect.com/science/article/pii/S2214914718305658
id doaj-bcfc45298c784e1ab22342eecd82d888
record_format Article
spelling doaj-bcfc45298c784e1ab22342eecd82d8882021-05-02T17:14:57ZengKeAi Communications Co., Ltd.Defence Technology2214-91472019-08-01154636644Electroless nickel fabrication on surface modified magnesium substratesAyushi Thakur0Swaroop Gharde1Balasubramanian Kandasubramanian2Department of Metallurgical and Materials Engineering, National Institute of Technology, Hazratbal, Srinagar, Jammu & Kashmir, 190006, IndiaDepartment of Metallurgical & Materials Engineering, DIAT (DU), Ministry of Defence, Girinagar, Pune, 411025, Maharashtra, IndiaDepartment of Metallurgical & Materials Engineering, DIAT (DU), Ministry of Defence, Girinagar, Pune, 411025, Maharashtra, India; Corresponding author.In recent years, magnesium (Mg) has evolved as a salient material, in affiliation with electroless nickel (Ni) coating, which have found applications in automobiles, aerospace and confederate fields attributing to its excellent inherent weight sensitive properties. However, being acknowledged for its remarkable auxiliary properties like flexible machining, appreciable weight sensitivity and ability to be patently die-cast into mesh constructs, magnesium is prejudiced by aeronautical standards predominantly for its inferior corrosion resistance properties. In this sense, electroless nickel plating on magnesium and its alloys has been suggested to extricate it from corrosion problem and make it more competitive in industrial and defence applications. Autocatalytic fixation of metal ions onto respective substrates accrues and alters their mechanical, electrochemical and tribological properties, destitute of any electric current aid. This proficiently identified technique is prosecuted with the assistance of a series of sequenced operations involving a prior pretreatment, which corresponds to the chemical cleaning of the substrate surface; electroless coating; and a later activation process which is a mild etching of the electroless coated surface. The susceptibility of magnesium to this methodology has advanced and propagated its exercise and applicability in aircraft, satellites and allied aeronautical fields. Contemporarily, researchers have proposed various eco-friendly and modified duplex and composite coatings which have transmuted properties of these appendages by tailoring alloy compositions and reagents employed. This review article systematically colligates various considerations and evaluations on electroless nickel applications of magnesium and its alloys and explicates how it anchors its practice in the respective domains. Furthermore, a comprehensive analysis is devised based on the pre-existing treatment methods for accomplishing the same. Keywords: Electroless nickel plating, Magnesium, Magnesium alloys, Corrosion-resistance, Micro arc oxidation (MAO)http://www.sciencedirect.com/science/article/pii/S2214914718305658
collection DOAJ
language English
format Article
sources DOAJ
author Ayushi Thakur
Swaroop Gharde
Balasubramanian Kandasubramanian
spellingShingle Ayushi Thakur
Swaroop Gharde
Balasubramanian Kandasubramanian
Electroless nickel fabrication on surface modified magnesium substrates
Defence Technology
author_facet Ayushi Thakur
Swaroop Gharde
Balasubramanian Kandasubramanian
author_sort Ayushi Thakur
title Electroless nickel fabrication on surface modified magnesium substrates
title_short Electroless nickel fabrication on surface modified magnesium substrates
title_full Electroless nickel fabrication on surface modified magnesium substrates
title_fullStr Electroless nickel fabrication on surface modified magnesium substrates
title_full_unstemmed Electroless nickel fabrication on surface modified magnesium substrates
title_sort electroless nickel fabrication on surface modified magnesium substrates
publisher KeAi Communications Co., Ltd.
series Defence Technology
issn 2214-9147
publishDate 2019-08-01
description In recent years, magnesium (Mg) has evolved as a salient material, in affiliation with electroless nickel (Ni) coating, which have found applications in automobiles, aerospace and confederate fields attributing to its excellent inherent weight sensitive properties. However, being acknowledged for its remarkable auxiliary properties like flexible machining, appreciable weight sensitivity and ability to be patently die-cast into mesh constructs, magnesium is prejudiced by aeronautical standards predominantly for its inferior corrosion resistance properties. In this sense, electroless nickel plating on magnesium and its alloys has been suggested to extricate it from corrosion problem and make it more competitive in industrial and defence applications. Autocatalytic fixation of metal ions onto respective substrates accrues and alters their mechanical, electrochemical and tribological properties, destitute of any electric current aid. This proficiently identified technique is prosecuted with the assistance of a series of sequenced operations involving a prior pretreatment, which corresponds to the chemical cleaning of the substrate surface; electroless coating; and a later activation process which is a mild etching of the electroless coated surface. The susceptibility of magnesium to this methodology has advanced and propagated its exercise and applicability in aircraft, satellites and allied aeronautical fields. Contemporarily, researchers have proposed various eco-friendly and modified duplex and composite coatings which have transmuted properties of these appendages by tailoring alloy compositions and reagents employed. This review article systematically colligates various considerations and evaluations on electroless nickel applications of magnesium and its alloys and explicates how it anchors its practice in the respective domains. Furthermore, a comprehensive analysis is devised based on the pre-existing treatment methods for accomplishing the same. Keywords: Electroless nickel plating, Magnesium, Magnesium alloys, Corrosion-resistance, Micro arc oxidation (MAO)
url http://www.sciencedirect.com/science/article/pii/S2214914718305658
work_keys_str_mv AT ayushithakur electrolessnickelfabricationonsurfacemodifiedmagnesiumsubstrates
AT swaroopgharde electrolessnickelfabricationonsurfacemodifiedmagnesiumsubstrates
AT balasubramaniankandasubramanian electrolessnickelfabricationonsurfacemodifiedmagnesiumsubstrates
_version_ 1721489641574498304