Carbon nanotube composites for thermal management
Композиты на основе углеродных нанотрубок для управления теплопереносом
2002-04-15
SCID: 54.1/gnmj2mht
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SWNT-epoxy compositesVickers hardnesselectrical percolation thresholdsingle-wall carbon nanotubesthermal conductivity
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Abstract (AI)
Single-wall carbon nanotubes (SWNTs) were used to augment the thermal transport properties of industrial epoxy. Samples loaded with 1 wt % unpurified SWNT material showed a 70% increase in thermal conductivity at 40 K, rising to 125% at room temperature; the enhancement due to 1 wt % loading of vapor grown carbon fibers was three times smaller. Electrical conductivity data showed a percolation threshold between 0.1 and 0.2 wt % SWNT loading. The Vickers hardness rose monotonically with SWNT loading up to a factor of 3.5 at 2 wt %. These results suggest that the thermal and mechanical properties of SWNT-epoxy composites are improved, without the need to chemically functionalize the nanotubes.
Key Findings
1
Adding 1 wt% unpurified single-wall carbon nanotubes increased epoxy thermal conductivity by 70% at 40 K and 125% at room temperature.
2
Electrical conductivity exhibited a percolation threshold between 0.1 and 0.2 wt% SWNT loading.
3
SWNT–epoxy composites improved thermal and mechanical properties without requiring chemical functionalization of the nanotubes.
4
The thermal-conductivity enhancement from 1 wt% vapor-grown carbon fibers was three times smaller than that from SWNTs.
5
Vickers hardness increased monotonically with SWNT concentration, reaching 3.5 times the baseline at 2 wt% loading.
Research Object
Epoxy composite materials loaded with single-wall carbon nanotubes (SWNTs)
Research Subject
thermal transport, electrical percolation, and mechanical hardness as functions of SWNT loading
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2002-04-15
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