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Solid-state interfacial reaction and load transfer efficiency in carbon nanotubes (CNTs)-reinforced aluminum matrix composites

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TLDR
In this paper, the role of interfacial carbide played in determining the load transfer efficiency of carbon nanotubes (CNTs) reinforced by homogeneously-dispersed CNTs.
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This article is published in Carbon.The article was published on 2017-04-01. It has received 270 citations till now. The article focuses on the topics: Carbide & Carbon nanotube.

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Length effect of carbon nanotubes on the strengthening mechanisms in metal matrix composites

TL;DR: In this paper, the effect of the aspect ratio of carbon nanotubes (CNTs) on aluminum metal matrix composites (Al MMCs) was studied and the tensile results showed that the CNTs exhibited a strong strengthening effect in the composites regardless of their aspect ratios.
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Interface design of graphene/copper composites by matrix alloying with titanium

TL;DR: In this paper, an interface design strategy by matrix-alloying with Ti for in-situ interfacial carbide formation in reduced graphene oxide (RGO)/CuTi composites was reported.
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Interface and mechanical/thermal properties of graphene/copper composite with Mo2C nanoparticles grown on graphene

TL;DR: In this paper, the authors used Mo2C nanoparticles grown on reduced graphene oxide (Mo2C@RGO) to prepare the 1.5 volumetric ratio of 1.1% Mo2c@rGO/Cu composite, which exhibited a yield strength of 238 MPa, 58% and 127% higher than that of pure Cu and pure Cu, respectively.
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Interface structure and strengthening behavior of graphene/CuCr composites

TL;DR: In this article, the interface adhesion and mechanical properties of reduced graphene oxide (RGO)/CuCr composites were improved by matrix-alloying with ∼ 0.2
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Graphene defect engineering for optimizing the interface and mechanical properties of graphene/copper composites

TL;DR: In this paper, a rational defect engineering strategy was proposed to tailor the interface and mechanical properties of graphene/Cu composites, and the composites with plasma-treated graphene exhibited a higher strength enhancement and better interface stability in response to thermal cycling, which was attributed to the CuxOy-coordinated improved interfacial bonding that provided efficient load transfer and thermal stress relaxation.
References
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Fabrication process of carbon nanotube/light metal matrix composites by squeeze casting

TL;DR: In this article, the authors measured the wettability of the basal plane of graphite by molten aluminum or magnesium was measured using the sessile drop method, and trial fabrication of multi-walled carbon nanotubes (MWCNTs) reinforced aluminum and magnesium alloy composites was carried out by squeeze casting.
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Developing high-performance aluminum matrix composites with directionally aligned carbon nanotubes by combining friction stir processing and subsequent rolling

TL;DR: In this paper, a route combining friction stir processing and subsequent rolling processing was established to fabricate 1.5-4.5% carbon nanotube (CNT)-reinforced 2009Al composites.
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Compocasting of A356-CNT composite

TL;DR: A356 aluminum alloys reinforced with carbon nano-tubes (CNTs) were produced by stir casting and compocasting routes and their microstructural characteristics and hardness were examined as discussed by the authors.
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Mechanical properties and microstructures of carbon nanotube-reinforced Al matrix composite fabricated by in situ chemical vapor deposition

TL;DR: In this paper, a CNT-reinforced Al nanocomposites fabricated with in situ chemical vapor deposition process for achieving homogeneous dispersion of CNTs and good interfacial bonding between CNT and metallic matrices.
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