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Experimental and Numerical Investigation of the Silicon Particle Distribution in Electrospun Nanofibers

机译:电纺纳米纤维硅颗粒分布的实验性和数值研究

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The properties of ceramic materials are dependent on crystal sizes and their distribution. These parameters can be controlled using electrospinning of the two-phase mixed system. The preceramic solution consists of silicon nanoparticles and polyacrylonitrile (PAN) polymer mixture. Particle distribution during the electrospinning technique was characterized using transmission electron microscopy and modeled using the finite element method. The experimental and numerical results were in agreement. Large silicon particles were located in the skin and the smaller ones were located at the core. This was illustrated by the migration rate from the core, which was the fastest for large particles and diminished as the particles become smaller in size. The threshold for Stokes number was found to be around 2.2 X 10(-4) with a critical particle size of 1.0 X 10(-7) m in diameter. The current results are very promising, as it demonstrated a novel way for the fabrication of PAN/Si ceramic nanofibers with a gradient of particle size and properties from the skin to the core.
机译:陶瓷材料的性质取决于晶体尺寸及其分布。可以使用两相混合系统的静电纺丝来控制这些参数。料理溶液由硅纳米颗粒和聚丙烯腈(盘)聚合物混合物组成。静电纺丝技术期间的颗粒分布用透射电子显微镜表征和使用有限元方法进行建模。实验和数值结果一致。大硅颗粒位于皮肤中,较小的硅颗粒位于芯处。这是由核心的迁移率来说明,这对于大颗粒最快并且随着颗粒的尺寸较小而减少。发现斯托克斯数的阈值被发现为约2.2×10(-4),其直径为1.0×10(-7)m的临界粒度。目前的结果非常有前途,因为它表明了一种用于制造PAN / Si陶瓷纳米纤维的梯度与从皮肤到芯的性质的梯度制造的新方法。

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