Improving the Resistance to Wear and Mechanical Characteristics of Cladding Layers on Titanium and its Alloys: A Review

Because of inadequate hardness, low resistance to wear, and excess friction coefficient of titanium, and its alloys are limited in their applicability. Cladding, a type of surface modification process, is used to create layers on titanium and its alloys that have superior mechanical qualities, wear...

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Published in:Tribology in Industry
Main Authors: Rajeev Ranjan, Anil Kumar Das
Format: Article
Language:English
Published: University of Kragujevac 2023-03-01
Subjects:
Online Access:http://www.tribology.rs/journals/2023/2023-1/2023-1-11.html
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author Rajeev Ranjan
Anil Kumar Das
author_facet Rajeev Ranjan
Anil Kumar Das
author_sort Rajeev Ranjan
collection DOAJ
container_title Tribology in Industry
description Because of inadequate hardness, low resistance to wear, and excess friction coefficient of titanium, and its alloys are limited in their applicability. Cladding, a type of surface modification process, is used to create layers on titanium and its alloys that have superior mechanical qualities, wear characteristics, oxidation resistance at high temperatures, and good biocompatibility. Material selection is critical for achieving the increased qualities mentioned above, in addition to various cladding techniques and associated process parameters. A review of the outcomes of various common wear-resistant cladding techniques applied to the titanium alloy surface is the subject of this study. The most important functional claddings in this domain are also presented and investigated in depth. The present issues and future initiatives are also discussed, with an emphasis on identifying knowledge and technological gaps as well as attempting to establish future research possibilities. On this foundation, it is suggested that in the coming years, resistant-to-wear cladding with significant improvements in toughness and hardness should progress on the path of smart manufacturing techniques, optimising and precisely customising microstructural configurations, and developing numerical simulation techniques of cladding.
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spelling doaj-art-eafe3535f12e4f62bd56835c81ebbcc72025-08-19T22:06:39ZengUniversity of KragujevacTribology in Industry0354-89962217-79652023-03-0145113615210.24874/ti.1416.12.22.03Improving the Resistance to Wear and Mechanical Characteristics of Cladding Layers on Titanium and its Alloys: A ReviewRajeev Ranjan0https://orcid.org/0000-0003-1294-4765Anil Kumar Das1https://orcid.org/0000-0002-1748-4529Department of Mechanical Engineering, National Institute of Technology Patna, Patna, Bihar, 800005, IndiaDepartment of Mechanical Engineering, National Institute of Technology Patna, Patna, Bihar, 800005, IndiaBecause of inadequate hardness, low resistance to wear, and excess friction coefficient of titanium, and its alloys are limited in their applicability. Cladding, a type of surface modification process, is used to create layers on titanium and its alloys that have superior mechanical qualities, wear characteristics, oxidation resistance at high temperatures, and good biocompatibility. Material selection is critical for achieving the increased qualities mentioned above, in addition to various cladding techniques and associated process parameters. A review of the outcomes of various common wear-resistant cladding techniques applied to the titanium alloy surface is the subject of this study. The most important functional claddings in this domain are also presented and investigated in depth. The present issues and future initiatives are also discussed, with an emphasis on identifying knowledge and technological gaps as well as attempting to establish future research possibilities. On this foundation, it is suggested that in the coming years, resistant-to-wear cladding with significant improvements in toughness and hardness should progress on the path of smart manufacturing techniques, optimising and precisely customising microstructural configurations, and developing numerical simulation techniques of cladding.http://www.tribology.rs/journals/2023/2023-1/2023-1-11.htmlsurface modificationtitanium and its alloyslaser claddingtig claddingplasma arc claddingmicrowave cladding
spellingShingle Rajeev Ranjan
Anil Kumar Das
Improving the Resistance to Wear and Mechanical Characteristics of Cladding Layers on Titanium and its Alloys: A Review
surface modification
titanium and its alloys
laser cladding
tig cladding
plasma arc cladding
microwave cladding
title Improving the Resistance to Wear and Mechanical Characteristics of Cladding Layers on Titanium and its Alloys: A Review
title_full Improving the Resistance to Wear and Mechanical Characteristics of Cladding Layers on Titanium and its Alloys: A Review
title_fullStr Improving the Resistance to Wear and Mechanical Characteristics of Cladding Layers on Titanium and its Alloys: A Review
title_full_unstemmed Improving the Resistance to Wear and Mechanical Characteristics of Cladding Layers on Titanium and its Alloys: A Review
title_short Improving the Resistance to Wear and Mechanical Characteristics of Cladding Layers on Titanium and its Alloys: A Review
title_sort improving the resistance to wear and mechanical characteristics of cladding layers on titanium and its alloys a review
topic surface modification
titanium and its alloys
laser cladding
tig cladding
plasma arc cladding
microwave cladding
url http://www.tribology.rs/journals/2023/2023-1/2023-1-11.html
work_keys_str_mv AT rajeevranjan improvingtheresistancetowearandmechanicalcharacteristicsofcladdinglayersontitaniumanditsalloysareview
AT anilkumardas improvingtheresistancetowearandmechanicalcharacteristicsofcladdinglayersontitaniumanditsalloysareview