A novel Mo-W interlayer approach for CVD diamond deposition on steel

Steel is the most widely used material in engineering for its cost/performance ratio and coatings are routinely applied on its surface to further improve its properties. Diamond coated steel parts are an option for many demanding industrial applications through prolonging the lifetime of steel parts...

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Main Authors: Vojtěch Kundrát, Xiaoling Zhang, Kevin Cooke, Hailin Sun, John Sullivan, Haitao Ye
Format: Article
Language:English
Published: AIP Publishing LLC 2015-04-01
Series:AIP Advances
Online Access:http://dx.doi.org/10.1063/1.4918969
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spelling doaj-6bad881ba1824879a5d95e489dc39a942020-11-25T00:57:21ZengAIP Publishing LLCAIP Advances2158-32262015-04-0154047130047130-810.1063/1.4918969031504ADVA novel Mo-W interlayer approach for CVD diamond deposition on steelVojtěch Kundrát0Xiaoling Zhang1Kevin Cooke2Hailin Sun3John Sullivan4Haitao Ye5School of Engineering & Applied Science, Aston University, Birmingham, B4 7ET, United KingdomMiba Coating Group: Teer Coatings Ltd, West-Stone-House, West-Stone, Berry-Hill-Industrial-Estate, WR9 9AS, Droitwich, United KingdomMiba Coating Group: Teer Coatings Ltd, West-Stone-House, West-Stone, Berry-Hill-Industrial-Estate, WR9 9AS, Droitwich, United KingdomMiba Coating Group: Teer Coatings Ltd, West-Stone-House, West-Stone, Berry-Hill-Industrial-Estate, WR9 9AS, Droitwich, United KingdomSchool of Engineering & Applied Science, Aston University, Birmingham, B4 7ET, United KingdomSchool of Engineering & Applied Science, Aston University, Birmingham, B4 7ET, United KingdomSteel is the most widely used material in engineering for its cost/performance ratio and coatings are routinely applied on its surface to further improve its properties. Diamond coated steel parts are an option for many demanding industrial applications through prolonging the lifetime of steel parts, enhancement of tool performance as well as the reduction of wear rates. Direct deposition of diamond on steel using conventional chemical vapour deposition (CVD) processes is known to give poor results due to the preferential formation of amorphous carbon on iron, nickel and other elements as well as stresses induced from the significant difference in the thermal expansion coefficients of those materials. This article reports a novel approach of deposition of nanocrystalline diamond coatings on high-speed steel (M42) substrates using a multi-structured molybdenum (Mo) – tungsten (W) interlayer to form steel/Mo/Mo-W/W/diamond sandwich structures which overcome the adhesion problem related to direct magnetron sputtering deposition of pure tungsten. Surface, interface and tribology properties were evaluated to understand the role of such an interlayer structure. The multi-structured Mo-W interlayer has been proven to improve the adhesion between diamond films and steel substrates by acting as an effective diffusion barrier during the CVD diamond deposition.http://dx.doi.org/10.1063/1.4918969
collection DOAJ
language English
format Article
sources DOAJ
author Vojtěch Kundrát
Xiaoling Zhang
Kevin Cooke
Hailin Sun
John Sullivan
Haitao Ye
spellingShingle Vojtěch Kundrát
Xiaoling Zhang
Kevin Cooke
Hailin Sun
John Sullivan
Haitao Ye
A novel Mo-W interlayer approach for CVD diamond deposition on steel
AIP Advances
author_facet Vojtěch Kundrát
Xiaoling Zhang
Kevin Cooke
Hailin Sun
John Sullivan
Haitao Ye
author_sort Vojtěch Kundrát
title A novel Mo-W interlayer approach for CVD diamond deposition on steel
title_short A novel Mo-W interlayer approach for CVD diamond deposition on steel
title_full A novel Mo-W interlayer approach for CVD diamond deposition on steel
title_fullStr A novel Mo-W interlayer approach for CVD diamond deposition on steel
title_full_unstemmed A novel Mo-W interlayer approach for CVD diamond deposition on steel
title_sort novel mo-w interlayer approach for cvd diamond deposition on steel
publisher AIP Publishing LLC
series AIP Advances
issn 2158-3226
publishDate 2015-04-01
description Steel is the most widely used material in engineering for its cost/performance ratio and coatings are routinely applied on its surface to further improve its properties. Diamond coated steel parts are an option for many demanding industrial applications through prolonging the lifetime of steel parts, enhancement of tool performance as well as the reduction of wear rates. Direct deposition of diamond on steel using conventional chemical vapour deposition (CVD) processes is known to give poor results due to the preferential formation of amorphous carbon on iron, nickel and other elements as well as stresses induced from the significant difference in the thermal expansion coefficients of those materials. This article reports a novel approach of deposition of nanocrystalline diamond coatings on high-speed steel (M42) substrates using a multi-structured molybdenum (Mo) – tungsten (W) interlayer to form steel/Mo/Mo-W/W/diamond sandwich structures which overcome the adhesion problem related to direct magnetron sputtering deposition of pure tungsten. Surface, interface and tribology properties were evaluated to understand the role of such an interlayer structure. The multi-structured Mo-W interlayer has been proven to improve the adhesion between diamond films and steel substrates by acting as an effective diffusion barrier during the CVD diamond deposition.
url http://dx.doi.org/10.1063/1.4918969
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