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Analysis of the Nanoparticle Dispersion and Its Effect on the Crystalline Microstructure in Carbon-Additivated PA12 Feedstock Material for Laser Powder Bed Fusion

机译:纳米粒子分散的分析及其对激光粉床碳含量碳含量的PA12原料材料结晶微观结构的影响

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摘要

Driven by the rapid development of additive manufacturing technologies and the trend towards mass customization, the development of new feedstock materials has become a key aspect. Additivation of the feedstock with nanoparticles is a possible route for tailoring the feedstock material to the printing process and to modify the properties of the printed parts. This study demonstrates the colloidal additivation of PA12 powder with laser-synthesized carbon nanoparticles at >95% yield, focusing on the dispersion of the nanoparticles on the polymer microparticle surface at nanoparticle loadings below 0.05 vol%. In addition to the descriptors “wt%” and “vol%”, the descriptor “surf%” is discussed for characterizing the quantity and quality of nanoparticle loading based on scanning electron microscopy. The functionalized powders are further characterized by confocal dark field scattering, differential scanning calorimetry, powder rheology measurements (avalanche angle and Hausner ratio), and regarding their processability in laser powder bed fusion (PBF-LB). We find that heterogeneous nucleation is induced even at a nanoparticle loading of just 0.005 vol%. Finally, analysis of the effect of low nanoparticle loadings on the final parts’ microstructure by polarization microscopy shows a nanoparticle loading-dependent change of the dimensions of the lamellar microstructures within the printed part.
机译:由加油制造技术的快速发展驱动和大规模定制的趋势,新原料材料的发展已成为一个关键方面。用纳米颗粒的原料的增加是用于将原料材料定制到印刷过程的可能途径并改变印刷部件的性质。本研究表明PA12粉末的胶体成型与激光合成的碳纳米粒子为0.05%且聚合物在纳米颗粒载量低于0.05体积%的聚合物微粒表面上的分散体。除了描述符“WT%”和“VOL%”之外,讨论描述符“冲浪%”以表征基于扫描电子显微镜的纳米粒子载荷的数量和质量。官能化粉末的特征在于通过共聚焦暗场散射,差示扫描量热法,粉末流变测量(雪崩角和HAUSNER比率),以及它们在激光粉床融合(PBF-LB)中的可加工性。我们发现即使在纳米颗粒载量为0.005体积%的纳米颗粒加载下也会诱导异质成核。最后,通过偏振显微镜分析了低纳米颗粒载荷对最终部件的微观结构的影响,显示了印刷部分内的层状微观结构尺寸的纳米颗粒加载依赖性变化。

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