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Article Details

  • Article Code : NWSA-18299-9691
  • Article Type : Araştırma Makalesi
  • Publication Number : 1A0474
  • Page Number : 112-123
  • Doi : 10.12739/NWSA.2021.16.3.1A0474
  • Abstract Reading : 1017
  • Download : 220
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Issue Details

  • Year : 2021
  • Volume : 16
  • Issue : 3
  • Number of Articles Published : 2
  • Published Date : 1.07.2021

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Engineering Sciences

Serial Number : 1A
ISSN No. : 1308-7231
Release Interval (in a Year) : 4 Issues

INVESTIGATION ON MECHANICAL PROPERTIES AND MICROSTRUCTURE OF BORON NITRIDE NANOPARTICLE REINFORCED ALUMINUM-BASED COMPOSITES

Mahmut Can ŞENEL1 , Mevlüt Gürbüz 2

In the current work, nano boron nitride (BN) reinforced aluminum (Al) matrix composites with different BN amounts (0.5-2wt.%) were produced by the powder metallurgy(PM) route. This fabrication method consists of dispersing, filtering, mixing, drying, compaction, and sintering processes. The density, compressive strength, micro Vickers hardness, microstructure, and phase structures of Al-BN composites and pure Al were examined. The obtained results indicated that minimum porosity (3.2%), highest density (~2.61g/cm3), Vickers hardness (~50HV), and compressive strength (~168MPa) were obtained at 1%BN reinforced aluminum matrix composite. A tremendous enhancement in Vickers hardness and compressive strength of %1BN reinforced Al matrix composite was achieved as ~61% and ~110% compared to pure Al. Consequently, the mechanical strength of BN reinforced Al-based composites enhanced up to 1% nano boron nitride amount. Due to the clumping of BN nanoparticles, the mechanical strength decreased after this content.

Keywords
Composite, Powder Metallurgy, Aluminum, Boron Nitride,, Microstructure,

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Authors

Mahmut Can ŞENEL (1) (Corresponding Author)

Ondokuz Mayıs Üniversitesi
mahmutcan.senel@omu.edu.tr | 0000000000000000

Mevlüt Gürbüz (2)

On Dokuz Mayıs University
mgurbuz@omu.edu.tr | 0000000323655918

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References
[1] Lacob, G., Ghica, V.G., Buzatu, M., Buzatu T., and Petrescu, M. I., (2015). Studies on wear rate and hardness of the Al/Al2O3/Gr hybrid composites produced via powder metallurgy. Composites Part B:Engineering, Volume:69, pp:603-611, DOI:10.1016/j.compositesb.2014.07.008.