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首页> 外文期刊>Computational Mechanics: Solids, Fluids, Fracture Transport Phenomena and Variational Methods >A hybrid lattice Boltzmann-molecular dynamics-immersed boundary method model for the simulation of composite foams
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A hybrid lattice Boltzmann-molecular dynamics-immersed boundary method model for the simulation of composite foams

机译:用于模拟复合泡沫的混合晶格玻尔兹曼-分子动力学-浸没边界法模型

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Small fillers (e.g., carbon fibers) are commonly added to polymer foams to create composite foams that can improve foam properties such as thermal and electrical conductivity. Understanding the motion and orientation of fillers during the foaming process is crucial because these can affect the properties of composite foams significantly. In this work, a hybrid lattice Boltzmann method-molecular dynamics-immersed boundary method model is presented for simulating the foaming process of polymer composites. The LBM model resolves the foaming process, and the MD model accounts for filler dynamics. These two solvers are coupled by a direct forcing IBM. This solver can simulate composite foaming processes involving many bubbles and filler particles, including rigid and deformable 3D particles, and rigid, deformable, and fragile fibers. The solver relaxes most simplifying assumptions of earlier polymer composite models, allowing for a better understanding of filler motion and interaction with growing bubbles.
机译:小填料(例如碳纤维)通常添加到聚合物泡沫中,以形成复合泡沫,从而改善泡沫性能,例如导热性和导电性。了解填料在发泡过程中的运动和取向至关重要,因为这些会显着影响复合泡沫的性能。本文提出了一种混合晶格玻尔兹曼方法-分子动力学-浸没边界法模型,用于模拟聚合物复合材料的发泡过程。LBM 模型用于解析发泡过程,而 MD 模型则考虑了填料动力学。这两个求解器通过直接强制 IBM 耦合。该求解器可以模拟涉及许多气泡和填充颗粒的复合发泡过程,包括刚性和可变形的 3D 颗粒,以及刚性、可变形和易碎的纤维。该求解器放宽了早期聚合物复合材料模型的大多数简化假设,从而可以更好地理解填料运动以及与生长气泡的相互作用。

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