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- W4295329087 abstract "Aluminum and titanium carbide (TiC) metal matrix composite is a novel material system containing titanium carbide hard particulates entrenched in a 6061 aluminum alloy matrix that has exhibited better in-service performance and enhanced wear behaviors. These metal matrix composites had shown a significant enhancement in the mechanical, wear thermal, and to meet the industrial world’s demand for mechanical and electrical properties because of their better processability, and aluminum alloys are referred to as versatile light metals that are primarily used in automotive and aerospace, sports, and other engineering applications. Aluminum alloys are also advantageous because of their low cost, higher strength-to-weight ratio, and other eco-friendly characteristics. In this research work, aluminum and titanium carbide composites were prepared using the stir casting technique with different weight percentages of TiC particulate in the range of 3, 6, 9, and 12 weight percent added to the molten aluminum alloy. The prepared composites were turned on the lathe to the required size following the size of the extrusion die container, and an annealing process was performed to improve deformability. Cold extrusion and precipitation hardening were used to create these metal matrix composites. Wear behavior of as-cast, cold extruded, and cold extruded with precipitation hardening composites was evaluated experimentally using a pin on a disc with varying weight percentages. The results showed that adding TiC particles to the metal matrix composite improve its wear resistance, with additional improvements due to the cold extrusion process and precipitation hardening." @default.
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- W4295329087 date "2022-09-13" @default.
- W4295329087 modified "2023-10-18" @default.
- W4295329087 title "Sliding Wear Behavior of Cast, Cold Extruded, and Precipitation-Hardened Al/TiCp Metal Matrix Composite" @default.
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- W4295329087 doi "https://doi.org/10.1007/978-981-19-4571-7_30" @default.
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