Mechanical and Fractured surface characterization of epoxy/red mud/fly ash/ aluminium powder filled hybrid composites for automotive applications

In recent decades, one can observe a great increase in the replacement of traditional materials with polymer composites in high-strength and lightweight applications. High fuel consumption by automobile and aerospace vehicles built from legacy alloys has been a great challenge to material engineers...

وصف كامل

التفاصيل البيبلوغرافية
الحاوية / القاعدة:Fracture and Structural Integrity
المؤلفون الرئيسيون: K. C. Anil, A.B. Hemavathi, A. Adeebpasha
التنسيق: مقال
اللغة:الإنجليزية
منشور في: Gruppo Italiano Frattura 2023-03-01
الموضوعات:
الوصول للمادة أونلاين:https://fracturae.com/index.php/fis/article/view/3897
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author K. C. Anil
A.B. Hemavathi
A. Adeebpasha
author_facet K. C. Anil
A.B. Hemavathi
A. Adeebpasha
author_sort K. C. Anil
collection DOAJ
container_title Fracture and Structural Integrity
description In recent decades, one can observe a great increase in the replacement of traditional materials with polymer composites in high-strength and lightweight applications. High fuel consumption by automobile and aerospace vehicles built from legacy alloys has been a great challenge to material engineers. This has called for researches into lighter material development of the same or even superior mechanical properties to the existing materials in this area of applications. In the present study, epoxy based simple and hybrid composites were prepared with the incorporation of industrial waste as fillers at different weight percentages. Effect of filler type, combination and its concentration on mechanical properties such as tensile, impact and flexural strength were investigated. SEM analysis was carried out for fractured surfaces of composites, wherein minor voids, crack initiations and filler pullouts were seen indicating the necessity of coupling agent addition for still better performance. Among hybrid composites, epoxy/fly ash/red mud/aluminium powder (91/6/1.5/1.5 wt%) has showed the highest ultimate tensile modulus, flexural strength and hardness value compared to other composites under study.
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spelling doaj-art-e22196b082eb4dcb85cb76d33de7947d2025-08-20T01:26:20ZengGruppo Italiano FratturaFracture and Structural Integrity1971-89932023-03-011764Mechanical and Fractured surface characterization of epoxy/red mud/fly ash/ aluminium powder filled hybrid composites for automotive applicationsK. C. Anil 0A.B. Hemavathi1A. Adeebpasha2Department of Industrial Engineering and Management, SIT, Tumakuru, Karnataka, IndiaDepartment of Polymer Science and Technology, JSSSTU, Mysuru, Karnataka, IndiaDepartment of Polymer Science and Technology, JSSSTU, Mysuru, Karnataka, India In recent decades, one can observe a great increase in the replacement of traditional materials with polymer composites in high-strength and lightweight applications. High fuel consumption by automobile and aerospace vehicles built from legacy alloys has been a great challenge to material engineers. This has called for researches into lighter material development of the same or even superior mechanical properties to the existing materials in this area of applications. In the present study, epoxy based simple and hybrid composites were prepared with the incorporation of industrial waste as fillers at different weight percentages. Effect of filler type, combination and its concentration on mechanical properties such as tensile, impact and flexural strength were investigated. SEM analysis was carried out for fractured surfaces of composites, wherein minor voids, crack initiations and filler pullouts were seen indicating the necessity of coupling agent addition for still better performance. Among hybrid composites, epoxy/fly ash/red mud/aluminium powder (91/6/1.5/1.5 wt%) has showed the highest ultimate tensile modulus, flexural strength and hardness value compared to other composites under study. https://fracturae.com/index.php/fis/article/view/3897EpoxyRed mudFly ashAluminium powderHybrid composite
spellingShingle K. C. Anil
A.B. Hemavathi
A. Adeebpasha
Mechanical and Fractured surface characterization of epoxy/red mud/fly ash/ aluminium powder filled hybrid composites for automotive applications
Epoxy
Red mud
Fly ash
Aluminium powder
Hybrid composite
title Mechanical and Fractured surface characterization of epoxy/red mud/fly ash/ aluminium powder filled hybrid composites for automotive applications
title_full Mechanical and Fractured surface characterization of epoxy/red mud/fly ash/ aluminium powder filled hybrid composites for automotive applications
title_fullStr Mechanical and Fractured surface characterization of epoxy/red mud/fly ash/ aluminium powder filled hybrid composites for automotive applications
title_full_unstemmed Mechanical and Fractured surface characterization of epoxy/red mud/fly ash/ aluminium powder filled hybrid composites for automotive applications
title_short Mechanical and Fractured surface characterization of epoxy/red mud/fly ash/ aluminium powder filled hybrid composites for automotive applications
title_sort mechanical and fractured surface characterization of epoxy red mud fly ash aluminium powder filled hybrid composites for automotive applications
topic Epoxy
Red mud
Fly ash
Aluminium powder
Hybrid composite
url https://fracturae.com/index.php/fis/article/view/3897
work_keys_str_mv AT kcanil mechanicalandfracturedsurfacecharacterizationofepoxyredmudflyashaluminiumpowderfilledhybridcompositesforautomotiveapplications
AT abhemavathi mechanicalandfracturedsurfacecharacterizationofepoxyredmudflyashaluminiumpowderfilledhybridcompositesforautomotiveapplications
AT aadeebpasha mechanicalandfracturedsurfacecharacterizationofepoxyredmudflyashaluminiumpowderfilledhybridcompositesforautomotiveapplications