Article detail · 2016 · article
Microstructure and Hardness Characteristics of Al2O3 B4C Particle Reinforced Cu Matrix Composites
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- YÖKSİSYÖKSİS article record
- YÖKSİS venueActa Physica Polonica A
- Catalog match (ISSN)Acta Physica Polonica A
- OpenAlexOpenAlex enrichment (abstract, citations, topics)
Abstract
Copper is widely used in industrial applications because of its high electrical and thermal conductivity, easiness of processing and good corrosion resistance.However, copper also has some distinct limitations such as low hardness, low tensile yield strength and poor creep resistance.In this report copper matrix was reinforced with ceramics like Al2O3 and B4C particles using powder metallurgy (PM) method and its microstructure was examined with SEM and EDS.The microstructure has revealed an uniform distribution of particles in the matrix and a good interface bonding between B4C particles and the matrix.However the dispersion of Al2O3 particles, of larger sizes, has led to some porosity and inter-particle contacts in the composites.Therefore, hardness of B4C particlereinforced composites is significantly higher than that of Al2O3 particle-reinforced composites.
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Citations
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24citationsOpenAlex · cited_by_count (cache / database)
4 publications in the local catalog that cite this work (OpenAlex reference match; not the full global list).
- 2021 Quasi-Static Penetration Behavior of Glass-Fiber-Reinforced Epoxy NanocompositesCitations 46 · OpenAlex
- 2021 Quasi-Static Penetration Behavior of Glass-Fiber-Reinforced Epoxy NanocompositesCitations 46 · OpenAlex
- 2021 Quasi-Static Penetration Behavior of Glass-Fiber-Reinforced Epoxy NanocompositesCitations 46 · OpenAlex
- 2023 Al2O3 Particle Size Effect on Reinforced Cu Composites Produced by High Energy MillingCitations 3 · OpenAlex