Microstructure and Mechanical Properties of Ni Matrix B4C Reinforced Functionally Graded Composites

In this study, microstructure and mechanical properties of nickel matrix B4C reinforced functionally graded composites produced by powder metallurgy method were investigated. Samples with Ni+5% B4C, Ni +10% B4C, Ni+ 15% B4C and Ni+ 20% B4C compositions were sintered at 900 and 1050 °C for 60 minutes...

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Veröffentlicht in:Science of sintering 2021-01, Vol.53 (4), p.1-11
Hauptverfasser: Caligulu, Ugur, Durmus, Hulya, Akkas, Mehmet, Sahin, Baris
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Durmus, Hulya
Akkas, Mehmet
Sahin, Baris
description In this study, microstructure and mechanical properties of nickel matrix B4C reinforced functionally graded composites produced by powder metallurgy method were investigated. Samples with Ni+5% B4C, Ni +10% B4C, Ni+ 15% B4C and Ni+ 20% B4C compositions were sintered at 900 and 1050 °C for 60 minutes. Microhardness and wear tests along with optical microscopy, scanning electron microscopy with energy-dispersive X-ray spectroscopy (SEM-EDX) and X-ray diffraction (XRD) analyses were carried out to determine the mechanical properties, microstructure and phase composition of the samples. The results indicated that hardness and wear resistance increased with increases of B4C amount in nickel matrix.
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subjects Aviation
Boron carbide
Composite materials
Energy dispersive X ray spectroscopy
Mechanical properties
Microhardness
Microstructure
Nanoparticles
Nickel
Optical microscopy
Phase composition
Powder metallurgy
Scanning electron microscopy
Sintering
Sintering (powder metallurgy)
Spectrum analysis
Wear resistance
X-ray diffraction
title Microstructure and Mechanical Properties of Ni Matrix B4C Reinforced Functionally Graded Composites
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