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Electrically Conductive Polyamide 11 Nanocomposites for Selective Laser Sintering: Properties Characterization

机译:导电聚酰胺11纳米复合材料用于选择性激光烧结:性能表征

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Polyamide (nylon) 11 (PA11) is a commonly used material in selective laser sintering (SLS), but it has poor thermal and electrical properties. Previous research has shown that nanoscale additives, such as multi-wall nanotubes (MWNT) and nanographene platelets (NGP) can be combined with PA11 powder to improve these properties. Previous experimentation has dealt with samples that have been fabricated using injection molding and not the SLS process. This paper emphasizes the experimentation of using nanocomposite materials in actual SLS builds. The material used is PA11 pulverized together with low loadings of MWNT and NGP. PA11 that has been twin-screw extruded with MWNT and NGP separately will also be investigated. SLS process parameters will be adjusted to optimize mechanical, electrical, and thermal properties of test specimens. The data gathered in this study suggests the MWNT additive was effective at increasing the conductivity of the composite material with minimal losses in mechanical properties.
机译:聚酰胺(尼龙)11(PA11)是一种在选择性激光烧结(SLS)中的常用材料,但热和电性能差。以前的研究表明,纳米级添加剂,例如多壁纳米管(MWNT)和纳米蛋白血小板(NGP)可以与PA11粉末组合以改善这些性质。以前的实验已经处理了使用注塑成型而不是SLS工艺制造的样品。本文强调了在实际SLS构建中使用纳米复合材料的实验。所用的材料是PA11与MWNT和NGP的低负载一起粉碎。还将分别调查用MWNT和NGP挤出的双螺杆的PA11。将调整SLS工艺参数以优化测试样品的机械,电气和热性能。本研究收集的数据表明,MWNT添加剂在增加复合材料的电导率下具有最小的机械性能损失。

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