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Metal matrices offer not only high-temperature resistance but also strength and ductility, or "bendability," which increases toughness.
The incorporation of low-dimensional nanomaterials into 3D metal matrices are promising to translate their intriguing properties from nanoscale to the macroscopic world.
This work provides a new vista on the integration and interaction of novel low-dimensional nanofillers with bulk 3D metal matrices.
Ti-coated SiC particles were developed to improve the wear resistance of Fe Cu Sn alloy metal matrices designed for diamond tools.
At higher cE, further codeposition is achieved according to a mechanism which was originally proposed by Guglielmi for electroplated metal matrices.
In other words, higher volume fraction of the CNTs/nanovoids can be incorporated in the metal matrices without devastating effects of their interactions.
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Steven W. Kirkpatrick, "Damage and Failure of Metal Matrix Composites".
The B4C particles were homogeneously distributed in the metal matrix.
When the matrix is a metal, the composite is termed a metal matrix composite (MMC).
As a metal matrix, 5 10 μm copper particles were utilized.
The coating had a B4Cp/Al metal matrix composite structure.
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