Advancements in Aluminum-Based Composite Manufacturing: Leveraging La2O3 Reinforcement through Friction Stir Process

This study investigates the advancements in Aluminum-Based Composite Manufacturing through the incorporation of lanthanum oxide (La2O3) reinforcement using the Friction Stir Process (FSP). The pivotal role of precision machining, particularly the vertical milling machine, in executing FSP is emphasi...

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Main Authors: Kareem Hawraa, Raju Hemanth, E Annapoorna, Thethi H. Pal, Tyagi Lalit Kumar, Kumari Vandna
Format: Article
Language:English
Published: EDP Sciences 2024-01-01
Series:E3S Web of Conferences
Subjects:
Online Access:https://www.e3s-conferences.org/articles/e3sconf/pdf/2024/37/e3sconf_icftest2024_01036.pdf
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author Kareem Hawraa
Raju Hemanth
E Annapoorna
Thethi H. Pal
Tyagi Lalit Kumar
Kumari Vandna
author_facet Kareem Hawraa
Raju Hemanth
E Annapoorna
Thethi H. Pal
Tyagi Lalit Kumar
Kumari Vandna
author_sort Kareem Hawraa
collection DOAJ
description This study investigates the advancements in Aluminum-Based Composite Manufacturing through the incorporation of lanthanum oxide (La2O3) reinforcement using the Friction Stir Process (FSP). The pivotal role of precision machining, particularly the vertical milling machine, in executing FSP is emphasized. Specific parameters, including pin diameter, tool tilt angle, and rotational speed, were meticulously selected to ensure optimal performance. The uniform distribution of La2O3 particles within the composite matrix highlights the effectiveness of the fabrication process, indicating proper mixing and dispersion techniques. Experimental findings reveal significant improvements in mechanical properties, with a notable 22.78% enhancement in tensile strength, a significant 35.21% increase in hardness, a noteworthy 24.44% improvement in fatigue strength, and a substantial 28.68% increase in wear resistance observed in aluminum-La2O3 composites produced via FSP. These results underscore the potential of leveraging FSP for aluminum-based composite manufacturing, offering opportunities for the development of high-performance materials with enhanced mechanical properties and durability.
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spelling doaj.art-33eb4473678545d1b698975bac9afdff2024-04-05T07:29:48ZengEDP SciencesE3S Web of Conferences2267-12422024-01-015070103610.1051/e3sconf/202450701036e3sconf_icftest2024_01036Advancements in Aluminum-Based Composite Manufacturing: Leveraging La2O3 Reinforcement through Friction Stir ProcessKareem Hawraa0Raju Hemanth1E Annapoorna2Thethi H. Pal3Tyagi Lalit Kumar4Kumari Vandna5Hilla University CollegeNew Horizon College of EngineeringDepartment of AIMLE, GRIETLovely Professional UniversityLloyd Institute of Management and TechnologyLloyd Institute of Engineering & TechnologyThis study investigates the advancements in Aluminum-Based Composite Manufacturing through the incorporation of lanthanum oxide (La2O3) reinforcement using the Friction Stir Process (FSP). The pivotal role of precision machining, particularly the vertical milling machine, in executing FSP is emphasized. Specific parameters, including pin diameter, tool tilt angle, and rotational speed, were meticulously selected to ensure optimal performance. The uniform distribution of La2O3 particles within the composite matrix highlights the effectiveness of the fabrication process, indicating proper mixing and dispersion techniques. Experimental findings reveal significant improvements in mechanical properties, with a notable 22.78% enhancement in tensile strength, a significant 35.21% increase in hardness, a noteworthy 24.44% improvement in fatigue strength, and a substantial 28.68% increase in wear resistance observed in aluminum-La2O3 composites produced via FSP. These results underscore the potential of leveraging FSP for aluminum-based composite manufacturing, offering opportunities for the development of high-performance materials with enhanced mechanical properties and durability.https://www.e3s-conferences.org/articles/e3sconf/pdf/2024/37/e3sconf_icftest2024_01036.pdfaluminum-based composite manufacturinglanthanum oxide (la2o3) reinforcementfriction stir process (fsp)precision machiningmechanical properties enhancementuniform particle distribution
spellingShingle Kareem Hawraa
Raju Hemanth
E Annapoorna
Thethi H. Pal
Tyagi Lalit Kumar
Kumari Vandna
Advancements in Aluminum-Based Composite Manufacturing: Leveraging La2O3 Reinforcement through Friction Stir Process
E3S Web of Conferences
aluminum-based composite manufacturing
lanthanum oxide (la2o3) reinforcement
friction stir process (fsp)
precision machining
mechanical properties enhancement
uniform particle distribution
title Advancements in Aluminum-Based Composite Manufacturing: Leveraging La2O3 Reinforcement through Friction Stir Process
title_full Advancements in Aluminum-Based Composite Manufacturing: Leveraging La2O3 Reinforcement through Friction Stir Process
title_fullStr Advancements in Aluminum-Based Composite Manufacturing: Leveraging La2O3 Reinforcement through Friction Stir Process
title_full_unstemmed Advancements in Aluminum-Based Composite Manufacturing: Leveraging La2O3 Reinforcement through Friction Stir Process
title_short Advancements in Aluminum-Based Composite Manufacturing: Leveraging La2O3 Reinforcement through Friction Stir Process
title_sort advancements in aluminum based composite manufacturing leveraging la2o3 reinforcement through friction stir process
topic aluminum-based composite manufacturing
lanthanum oxide (la2o3) reinforcement
friction stir process (fsp)
precision machining
mechanical properties enhancement
uniform particle distribution
url https://www.e3s-conferences.org/articles/e3sconf/pdf/2024/37/e3sconf_icftest2024_01036.pdf
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