Powder Mixed Micro Electro Discharge Machining of Aluminium Nitride Ceramic

Advanced ceramic materials possess superior mechanical characteristics in terms of hardness, wear resistance, fracture toughness and flexural strength. However, these materials experience machining limitations due to their hardness. Machining process of such materials requires high cutting forces an...

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Main Authors: Bilal A., Rashid A., Liu C., Jahan M. P., Talamona D., Perveen A.
Format: Article
Language:English
Published: EDP Sciences 2019-01-01
Series:MATEC Web of Conferences
Online Access:https://www.matec-conferences.org/articles/matecconf/pdf/2019/52/matecconf_icbmm2019_06002.pdf
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author Bilal A.
Rashid A.
Liu C.
Jahan M. P.
Talamona D.
Perveen A.
author_facet Bilal A.
Rashid A.
Liu C.
Jahan M. P.
Talamona D.
Perveen A.
author_sort Bilal A.
collection DOAJ
description Advanced ceramic materials possess superior mechanical characteristics in terms of hardness, wear resistance, fracture toughness and flexural strength. However, these materials experience machining limitations due to their hardness. Machining process of such materials requires high cutting forces and results in high tool wear. Electro- discharge machining (EDM) can be considered as an alternative machining process for advanced ceramics, since this technique is a non-contact machining process, it does not involve high cutting forces but experiences moderate tool wear. However, EDM requires materials to have certain level of electrical conductivity, therefore, non-conductive and semi-conductive ceramic materials experience challenges during machining process. Assisting Electrode Method was suggested as a solution for machining of non-conductive ceramics by EDM. In this method, conductive layer is applied on top of non-conductive ceramics and thus workpiece can be machined by EDM process using residual conductive layer. In this study, coating consisting of three layers, where silver nanoparticles were sandwiched between two layers of silver and copper on top, was used as assisting electrode to machine Aluminium Nitride (AlN) ceramics by silver nanoparticles mixed micro-EDM. Successful machining of AlN was demonstrated and blind micro hole with higher than three aspect ratio was achieved.
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spelling doaj.art-f52fc3de140a4149ad507b32bf98da082022-12-21T18:36:02ZengEDP SciencesMATEC Web of Conferences2261-236X2019-01-013030600210.1051/matecconf/201930306002matecconf_icbmm2019_06002Powder Mixed Micro Electro Discharge Machining of Aluminium Nitride CeramicBilal A.0Rashid A.1Liu C.2Jahan M. P.3Talamona D.4Perveen A.5Department of Mechanical & Aerospace Engineering, Nazarbayev UniversityDepartment of Mechanical and Manufacturing Engineering, Miami UniversityDepartment of Mechanical and Manufacturing Engineering, Miami UniversityDepartment of Mechanical and Manufacturing Engineering, Miami UniversityDepartment of Mechanical & Aerospace Engineering, Nazarbayev UniversityDepartment of Mechanical & Aerospace Engineering, Nazarbayev UniversityAdvanced ceramic materials possess superior mechanical characteristics in terms of hardness, wear resistance, fracture toughness and flexural strength. However, these materials experience machining limitations due to their hardness. Machining process of such materials requires high cutting forces and results in high tool wear. Electro- discharge machining (EDM) can be considered as an alternative machining process for advanced ceramics, since this technique is a non-contact machining process, it does not involve high cutting forces but experiences moderate tool wear. However, EDM requires materials to have certain level of electrical conductivity, therefore, non-conductive and semi-conductive ceramic materials experience challenges during machining process. Assisting Electrode Method was suggested as a solution for machining of non-conductive ceramics by EDM. In this method, conductive layer is applied on top of non-conductive ceramics and thus workpiece can be machined by EDM process using residual conductive layer. In this study, coating consisting of three layers, where silver nanoparticles were sandwiched between two layers of silver and copper on top, was used as assisting electrode to machine Aluminium Nitride (AlN) ceramics by silver nanoparticles mixed micro-EDM. Successful machining of AlN was demonstrated and blind micro hole with higher than three aspect ratio was achieved.https://www.matec-conferences.org/articles/matecconf/pdf/2019/52/matecconf_icbmm2019_06002.pdf
spellingShingle Bilal A.
Rashid A.
Liu C.
Jahan M. P.
Talamona D.
Perveen A.
Powder Mixed Micro Electro Discharge Machining of Aluminium Nitride Ceramic
MATEC Web of Conferences
title Powder Mixed Micro Electro Discharge Machining of Aluminium Nitride Ceramic
title_full Powder Mixed Micro Electro Discharge Machining of Aluminium Nitride Ceramic
title_fullStr Powder Mixed Micro Electro Discharge Machining of Aluminium Nitride Ceramic
title_full_unstemmed Powder Mixed Micro Electro Discharge Machining of Aluminium Nitride Ceramic
title_short Powder Mixed Micro Electro Discharge Machining of Aluminium Nitride Ceramic
title_sort powder mixed micro electro discharge machining of aluminium nitride ceramic
url https://www.matec-conferences.org/articles/matecconf/pdf/2019/52/matecconf_icbmm2019_06002.pdf
work_keys_str_mv AT bilala powdermixedmicroelectrodischargemachiningofaluminiumnitrideceramic
AT rashida powdermixedmicroelectrodischargemachiningofaluminiumnitrideceramic
AT liuc powdermixedmicroelectrodischargemachiningofaluminiumnitrideceramic
AT jahanmp powdermixedmicroelectrodischargemachiningofaluminiumnitrideceramic
AT talamonad powdermixedmicroelectrodischargemachiningofaluminiumnitrideceramic
AT perveena powdermixedmicroelectrodischargemachiningofaluminiumnitrideceramic