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Engineering Solution in Monitoring Nanoparticle-Fluid Flow During Nanocomposites Processing

机译:纳米复合材料加工过程中监测纳米流体流动的工程解决方案

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New generation composites using nanoparticle-filled matrices have been significantly broadened to encompass a large variety of one-, two-, and three-dimensional systems made of distinctly dissimilar components mixed at the nanometer scale. Nevertheless, during the fabrication process of these novel composites, many problems potentially could arise. One such problem is the clogging of the channels of the microfiber matrix used due to strong interactions between the nanoparticle additives and the matrix walls. In this paper, a two-dimensional simulation model based on Lagrangian multiphase approach for nanoparticle-filled fluid, which flows around an aligned microfiber matrix, is introduced to investigate and predict the nanoparticles trajectories and their interactions with fluid flow and microfiber walls. An energy “imbalance” technique has been applied between the fluid and the microfiber walls to prevent any potential sticking of the nanoparticle additives on the microfiber walls. The trajectory of the nanoparticle has been predicted by integrating the force balance on it in a Lagrangian reference frame. The governing integral equations for the conservation of mass, momentum and energy have been solved in a segregated numerical fashion by a Control-Volume-Based Finite-Element Method.
机译:使用纳米颗粒填充基质的新一代复合材料已得到广泛拓宽,以涵盖由纳米级混合的明显不同的组分组成的各种一维,二维和三维系统。然而,在这些新型复合材料的制造过程中,可能会出现许多问题。一种这样的问题是由于纳米颗粒添加剂与基质壁之间的强相互作用而导致所使用的微纤维基质的通道堵塞。本文介绍了一种基于拉格朗日多相方法的二维模拟模型,该模型用于在对齐的微纤维基质周围流动的纳米颗粒填充流体,以研究和预测纳米颗粒的轨迹以及它们与流体流动和微纤维壁的相互作用。在流体和微纤维壁之间应用了能量“不平衡”技术,以防止纳米颗粒添加剂在微纤维壁上的任何潜在粘附。通过在拉格朗日参考系中整合力平衡,可以预测纳米粒子的轨迹。通过基于控制量的有限元方法以分离的数值方式求解了质量,动量和能量守恒的控制积分方程。

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