Nb-doped hydrogenated diamond-like carbon coated biodiesel injectors material: Synthesis, structure and properties
Despite the economic and environmental benefits of biodiesel, it poses significant challenges, including coking on metal surface and increased wear on diesel engine injector nozzles. Therefore, this study investigates the synthesis of niobium-doped diamond-like carbon (Nb-DLC) coatings on two types...
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my.iium.irep.1148882024-10-08T01:19:46Z http://irep.iium.edu.my/114888/ Nb-doped hydrogenated diamond-like carbon coated biodiesel injectors material: Synthesis, structure and properties Efeoglu, Ihsan Maleque, Md. Abdul Gulten, Gokhan Yesilyurt, Mustafa Yaylali, Banu Totik, Yasar Kalam, Md Abul Haji Hassan, Masjuki Zulkifli, Nurin Wahidah T173.2 Technological change TA2001 Plasma engineering. Applied plasma dynamics TN600 Metallurgy Despite the economic and environmental benefits of biodiesel, it poses significant challenges, including coking on metal surface and increased wear on diesel engine injector nozzles. Therefore, this study investigates the synthesis of niobium-doped diamond-like carbon (Nb-DLC) coatings on two types of injector nozzle materials (viz. H13 steel, AISI 420 stainless steel) using the Closed-Field Unbalanced Magnetron Sputtering (CFUBMS) technique. Comprehensive characterizations, including microstructural analysis, crystal structure evaluation, hardness assessment, and tribological property assessment, were conducted. The Nb-DLC coatings demonstrated a stable friction coefficient, with values four times lower than that of the substrate materials. The present findings demonstrate significant enhancements in terms of structural composition, crystalline phase, hardness, friction coefficients, and adhesion properties due to the Nb-DLC coatings. Therefore, Nb-DLC coated materials could be the promising candidate material for biodiesel engine injector nozzle applications. This emphasizes their potential to contribute significantly to the sustainable consolidation of biodiesel within automotive engine. Elsevier 2024-09-30 Article PeerReviewed application/pdf en http://irep.iium.edu.my/114888/7/114888_Nb-doped%20hydrogenated%20diamond-like%20carbon.pdf Efeoglu, Ihsan and Maleque, Md. Abdul and Gulten, Gokhan and Yesilyurt, Mustafa and Yaylali, Banu and Totik, Yasar and Kalam, Md Abul and Haji Hassan, Masjuki and Zulkifli, Nurin Wahidah (2024) Nb-doped hydrogenated diamond-like carbon coated biodiesel injectors material: Synthesis, structure and properties. Diamond and Related Materials, 149. pp. 1-10. ISSN 0925-9635 https://www.sciencedirect.com/science/article/pii/S092596352400829X/pdfft?md5=bfc98bb4d8e78eb742ae6e1cbbbd7a2d&pid=1-s2.0-S092596352400829X-main.pdf |
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T173.2 Technological change TA2001 Plasma engineering. Applied plasma dynamics TN600 Metallurgy Efeoglu, Ihsan Maleque, Md. Abdul Gulten, Gokhan Yesilyurt, Mustafa Yaylali, Banu Totik, Yasar Kalam, Md Abul Haji Hassan, Masjuki Zulkifli, Nurin Wahidah Nb-doped hydrogenated diamond-like carbon coated biodiesel injectors material: Synthesis, structure and properties |
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Despite the economic and environmental benefits of biodiesel, it poses significant challenges, including coking on metal surface and increased wear on diesel engine injector nozzles. Therefore, this study investigates the synthesis of niobium-doped diamond-like carbon (Nb-DLC) coatings on two types of injector nozzle materials (viz. H13 steel, AISI 420 stainless steel) using the Closed-Field Unbalanced Magnetron Sputtering (CFUBMS) technique. Comprehensive characterizations, including microstructural analysis, crystal structure evaluation, hardness assessment, and tribological property assessment, were conducted. The Nb-DLC coatings demonstrated a stable friction coefficient, with values four times lower than that of the substrate materials. The present findings demonstrate significant enhancements in terms of structural composition, crystalline phase, hardness, friction coefficients, and adhesion properties due to the Nb-DLC coatings. Therefore, Nb-DLC coated materials could be the promising candidate material for biodiesel engine injector nozzle applications. This emphasizes their potential to contribute significantly to the sustainable consolidation of biodiesel within automotive engine. |
format |
Article |
author |
Efeoglu, Ihsan Maleque, Md. Abdul Gulten, Gokhan Yesilyurt, Mustafa Yaylali, Banu Totik, Yasar Kalam, Md Abul Haji Hassan, Masjuki Zulkifli, Nurin Wahidah |
author_facet |
Efeoglu, Ihsan Maleque, Md. Abdul Gulten, Gokhan Yesilyurt, Mustafa Yaylali, Banu Totik, Yasar Kalam, Md Abul Haji Hassan, Masjuki Zulkifli, Nurin Wahidah |
author_sort |
Efeoglu, Ihsan |
title |
Nb-doped hydrogenated diamond-like carbon coated biodiesel injectors material: Synthesis, structure and properties |
title_short |
Nb-doped hydrogenated diamond-like carbon coated biodiesel injectors material: Synthesis, structure and properties |
title_full |
Nb-doped hydrogenated diamond-like carbon coated biodiesel injectors material: Synthesis, structure and properties |
title_fullStr |
Nb-doped hydrogenated diamond-like carbon coated biodiesel injectors material: Synthesis, structure and properties |
title_full_unstemmed |
Nb-doped hydrogenated diamond-like carbon coated biodiesel injectors material: Synthesis, structure and properties |
title_sort |
nb-doped hydrogenated diamond-like carbon coated biodiesel injectors material: synthesis, structure and properties |
publisher |
Elsevier |
publishDate |
2024 |
url |
http://irep.iium.edu.my/114888/7/114888_Nb-doped%20hydrogenated%20diamond-like%20carbon.pdf http://irep.iium.edu.my/114888/ https://www.sciencedirect.com/science/article/pii/S092596352400829X/pdfft?md5=bfc98bb4d8e78eb742ae6e1cbbbd7a2d&pid=1-s2.0-S092596352400829X-main.pdf |
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