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Evaluation of thermal and electrical conductivity of carbon-based PLA nanocomposites for 3D printing

机译:基于碳的PLA纳米复合材料的热导电性和电导率评价3D印刷

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PLA nanocomposites for fused-deposition modeling (FDM) technique are considered. Thermal and electrical conductivity of carbon-based PLA nanocomposites are investigated looking at the different morphological characteristic of the carbon nanoparticles. In particular commercial multi-walled carbon nanotubes (CNTs) and graphene nanoplates (GNPs) are considered as filler in order to realize filament for 3D printed devices for electrical and thermal application. In this paper a filler concentration up to 12% in weight is investigated. Transient Plane Source (TPS) measurements of thermal conductivity show that better heat conduction is obtained through the incorporation in the PLA matrix of carbonaceous nanostructures with predominantly two-dimensional shape (GNPs). DC electrical measurements show that the nanocomposite filled with the predominant mono-dimensional carbon nanoparticle (i.e. CNT) exhibits lower electrical percolation threshold, whereas a greater post percolation electrical conductivity is established with the two-dimensional filler (i.e. GNP). Such characteristics are to be considered in order to make robust and cost effective 3D printed device, by preferring 1D filler or 2D filler for electrical or thermal application respectively. Moreover, multiphase nanocomposites obtained with an optimized combination of CNT and GNP nanoparticles could be exploited to realize devices for joint electrical and thermal application.
机译:考虑了用于融合沉积建模(FDM)技术的PLA纳米复合材料。研究了碳基纳米复合材料的热和导电性,观察碳纳米粒子的不同形态特征。特别是商业多壁碳纳米管(CNT)和石墨烯纳米板(GNP)被认为是填料,以实现用于电气和热应用的3D印刷装置的长丝。在本文中,研究了填料浓度高达12%的重量。瞬态平面源(TPS)导热率的测量表明,通过纳入碳质纳米结构的PLA矩阵获得更好的热传导,主要是二维形状(GNPS)。直流电测量表明,填充有主要的单尺寸碳纳米粒子(即CNT)的纳米复合材料表现出较低的电渗透阈值,而用二维填料(即GNP)建立更大的渗透电导率。通过分别优选1D填充物或2D填充物,可以考虑这种特性,以便分别优选1D填充物或2D填充物的鲁棒和成本效益的3D印刷装置。此外,通过CNT和GNP纳米颗粒的优化组合获得的多相纳米复合材料可以利用以实现接头电气和热应用的装置。

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