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Carbon nanotubes reinforced alumina matrix nanocomposites for conductive ceramics by additive manufacturing

机译:增强氧化铝基质纳米复合材料通过添加剂制造用于导电陶瓷

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Alumina has been extensively used due to its high toughness and hardness, low bulk density, and thermal stability without interaction with the matrix at high temperature. However, the non-conductivity at room temperature narrows its broader applications. Carbon nanotube (CNT) is a suitable candidate to adjust the electrical property of alumina matrix composites due to its high electrical conductivity. By using material extrusion 3D printing (ME3DP), we fabricated 3D CNT/alumina green bodies using inks with controlled Theological properties for high printability. The printed green bodies with CNT loading from 3 wt% to 10 wt% were thermally treated to remove binders and sinter the 3D parts at temperatures from 900 to 1400 °C. The sintered samples showed a good dispersion of CNT in the alumina matrix and improved electrical conductivity. The electrical conductivity of the composites measured up to 10~(-1) S/m at 7 wt.% CNT loading, compared to the electrical conductivity of 10~(-13) S/m of pure alumina.
机译:由于其高韧性和硬度,低堆积密度和热稳定性,氧化铝已经广泛使用而不在高温下与基质相互作用。然而,室温下的非电导率变窄了其更广泛的应用。碳纳米管(CNT)是一种合适的候选者,用于调节氧化铝基复合材料的电性能由于其高导电性。通过使用材料挤出3D打印(ME3DP),我们使用墨水制作3D CNT /氧化铝生坯,具有控制的神学性质,可用于高可印刷性。用CNT加载的印刷生坯均可从3wt%到10wt%热处理,以在900至1400°C的温度下除去粘合剂并烧结3D部件。烧结样品显示CNT在氧化铝基质中的良好分散,改善电导率。与纯氧化铝的10〜(-13)S / M的电导率相比,复合材料的电导率高达10〜(-1)S / m。%CNT加载。

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