Impact of TiB2 Particles on Improving rocessing Parameters of TiB2/Al Metal Matrix Composites

TiB2/Al MMCs, which are composite materials consisting of TiB2 particles embedded in an aluminium matrix, exhibit unique properties that make them very favourable for manufacturing highperformance aircraft blades. Nevertheless, the machinability of TiB2/Al MMCs continues to be a hurdle owing to the...

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Main Authors: Seshappa Angadi, Prudhvi Raj Konka, Subbaratnam Bhavanasi, Chandrasekhar Rao Bandaru, Geetha Kumari B., Divya Boya, Lakhanpa Sorabh
Format: Article
Language:English
Published: EDP Sciences 2024-01-01
Series:MATEC Web of Conferences
Online Access:https://www.matec-conferences.org/articles/matecconf/pdf/2024/04/matecconf_icmed2024_01026.pdf
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author Seshappa Angadi
Prudhvi Raj Konka
Subbaratnam Bhavanasi
Chandrasekhar Rao Bandaru
Geetha Kumari B.
Divya Boya
Lakhanpa Sorabh
author_facet Seshappa Angadi
Prudhvi Raj Konka
Subbaratnam Bhavanasi
Chandrasekhar Rao Bandaru
Geetha Kumari B.
Divya Boya
Lakhanpa Sorabh
author_sort Seshappa Angadi
collection DOAJ
description TiB2/Al MMCs, which are composite materials consisting of TiB2 particles embedded in an aluminium matrix, exhibit unique properties that make them very favourable for manufacturing highperformance aircraft blades. Nevertheless, the machinability of TiB2/Al MMCs continues to be a hurdle owing to the impact of TiB2 particles, hence restricting the extensive use of these materials. This research effectively examined the influence of TiB2 particles on processing parameters for TiB2/Al MMCs in order to meet manufacturing requirements. In addition, the research sought to determine the most favourable processing settings for these metal matrix composites, taking into account many considerations. The end-process variables, namely surface roughness and material removal rate (MRR), were assessed after the determination of the most favourable cutting velocity, feed rate, and depth of cut. The findings demonstrate substantial deviations from the strengthening of Metal Matrix Composites (MMCs) using titanium diboride (TiB2) nanoparticles. These results provide vital insights for enhancing the machining process of this material.
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spelling doaj.art-3572aad97fd14bfca9613c8c574fedb72024-03-22T08:05:18ZengEDP SciencesMATEC Web of Conferences2261-236X2024-01-013920102610.1051/matecconf/202439201026matecconf_icmed2024_01026Impact of TiB2 Particles on Improving rocessing Parameters of TiB2/Al Metal Matrix CompositesSeshappa Angadi0Prudhvi Raj Konka1Subbaratnam Bhavanasi2Chandrasekhar Rao Bandaru3Geetha Kumari B.4Divya Boya5Lakhanpa Sorabh6Department of Mechanical Engineering, KG Reddy College of Engineering and TechnologyDepartment of Mechanical Engineering, Mahatma Gandhi Institute of Technology (A)Department of Mechanical Engineering, Malla Reddy Engineering College and Management SciencesDepartment of Mechanical Engineering, Vardhaman College of EngineeringDepartment of CSE, GRIETDepartment of CSE, GRIETLovely Professional UniversityTiB2/Al MMCs, which are composite materials consisting of TiB2 particles embedded in an aluminium matrix, exhibit unique properties that make them very favourable for manufacturing highperformance aircraft blades. Nevertheless, the machinability of TiB2/Al MMCs continues to be a hurdle owing to the impact of TiB2 particles, hence restricting the extensive use of these materials. This research effectively examined the influence of TiB2 particles on processing parameters for TiB2/Al MMCs in order to meet manufacturing requirements. In addition, the research sought to determine the most favourable processing settings for these metal matrix composites, taking into account many considerations. The end-process variables, namely surface roughness and material removal rate (MRR), were assessed after the determination of the most favourable cutting velocity, feed rate, and depth of cut. The findings demonstrate substantial deviations from the strengthening of Metal Matrix Composites (MMCs) using titanium diboride (TiB2) nanoparticles. These results provide vital insights for enhancing the machining process of this material.https://www.matec-conferences.org/articles/matecconf/pdf/2024/04/matecconf_icmed2024_01026.pdf
spellingShingle Seshappa Angadi
Prudhvi Raj Konka
Subbaratnam Bhavanasi
Chandrasekhar Rao Bandaru
Geetha Kumari B.
Divya Boya
Lakhanpa Sorabh
Impact of TiB2 Particles on Improving rocessing Parameters of TiB2/Al Metal Matrix Composites
MATEC Web of Conferences
title Impact of TiB2 Particles on Improving rocessing Parameters of TiB2/Al Metal Matrix Composites
title_full Impact of TiB2 Particles on Improving rocessing Parameters of TiB2/Al Metal Matrix Composites
title_fullStr Impact of TiB2 Particles on Improving rocessing Parameters of TiB2/Al Metal Matrix Composites
title_full_unstemmed Impact of TiB2 Particles on Improving rocessing Parameters of TiB2/Al Metal Matrix Composites
title_short Impact of TiB2 Particles on Improving rocessing Parameters of TiB2/Al Metal Matrix Composites
title_sort impact of tib2 particles on improving rocessing parameters of tib2 al metal matrix composites
url https://www.matec-conferences.org/articles/matecconf/pdf/2024/04/matecconf_icmed2024_01026.pdf
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