Carbon Nanotube Reinforced Alumina‐Based Ceramics with Novel Mechanical, Electrical, and Thermal Properties

Керамика на основе оксида алюминия, армированная углеродными нанотрубками, с новыми механическими, электрическими и тепловыми свойствами
Guodong Zhan, Amiya K. Mukherjee
2004-04-01

alumina nanocompositesanisotropic thermal propertieselectrical conductivitysingle-wall carbon nanotubesspark-plasma sintering
The extraordinary mechanical, thermal, and electrical properties of single‐wall carbon nanotubes (SWCNT) have prompted the development of advanced engineering materials with improved properties through the incorporation of carbon nanotubes in selected matrices. Dense SWCNT reinforced alumina nanocomposites have been fabricated by novel spark‐plasma‐sintering (SPS) technique. SWCNT were also successfully used to convert insulating nanoceramics to metallically conductive composites. Additionally, novel anisotropic thermal properties have been observed in the carbon nanotube composites. Such multifunctional carbon nanotube/ceramic composites with improved mechanical and electrical properties along with anisotropic thermal properties are envisaged for a wide range of applications.
1
Dense single-wall carbon nanotube-reinforced alumina nanocomposites were fabricated using a novel spark-plasma-sintering technique.
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Incorporating SWCNTs converted otherwise insulating alumina nanoceramics into metallically conductive composites.
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The carbon nanotube/alumina composites exhibited novel anisotropic thermal properties.
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The resulting multifunctional composites combined improved mechanical and electrical properties with anisotropic thermal behavior, supporting potential engineering applications.

Dense SWCNT-reinforced alumina nanocomposites

The composites’ mechanical, electrical, and anisotropic thermal properties, including conversion of insulating alumina nanoceramics into metallically conductive materials

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2004-04-01
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Guodong Zhan
Amiya K. Mukherjee
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