Modeling and Simulation of the Aggregation and the Structural and Mechanical Properties of Silica Aerogels
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作者:
Abdusalamov, Rasul
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Rhein Westfal TH Aachen, Dept Continuum Mech, D-52062 Aachen, GermanyBavarian Ctr Appl Energy Res, Div Energy Efficiency, D-97074 Wurzburg, Germany
Abdusalamov, Rasul
[2
]
Scherdel, Christian
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Bavarian Ctr Appl Energy Res, Div Energy Efficiency, D-97074 Wurzburg, GermanyBavarian Ctr Appl Energy Res, Div Energy Efficiency, D-97074 Wurzburg, Germany
Scherdel, Christian
[1
]
Itskov, Mikhail
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Rhein Westfal TH Aachen, Dept Continuum Mech, D-52062 Aachen, GermanyBavarian Ctr Appl Energy Res, Div Energy Efficiency, D-97074 Wurzburg, Germany
Itskov, Mikhail
[2
]
Milow, Barbara
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German Aerosp Ctr, Inst Mat Res, Dept Aerogels & Aerogel Composites, D-51147 Cologne, GermanyBavarian Ctr Appl Energy Res, Div Energy Efficiency, D-97074 Wurzburg, Germany
Milow, Barbara
[3
]
Reichenauer, Gudrun
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Bavarian Ctr Appl Energy Res, Div Energy Efficiency, D-97074 Wurzburg, GermanyBavarian Ctr Appl Energy Res, Div Energy Efficiency, D-97074 Wurzburg, Germany
Reichenauer, Gudrun
[1
]
Rege, Ameya
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German Aerosp Ctr, Inst Mat Res, Dept Aerogels & Aerogel Composites, D-51147 Cologne, GermanyBavarian Ctr Appl Energy Res, Div Energy Efficiency, D-97074 Wurzburg, Germany
Rege, Ameya
[3
]
机构:
[1] Bavarian Ctr Appl Energy Res, Div Energy Efficiency, D-97074 Wurzburg, Germany
Mechanical properties of aerogels are controlled by the connectivity of their network. In this paper, in order to study these properties, computational models of silica aerogels with different morphological entities have been generated by means of the diffusion-limited cluster-cluster aggregation (DLCA) algorithm. New insights into the influence of the model parameters on the generated aerogel structures and on the finite deformation under mechanical loads are provided. First, the structural and fractal properties of the modeled aerogels are investigated. The dependence of morphological properties such as the particle radius and density on these properties is studied. The results are correlated with experimental small-angle X-ray scattering (SAXS) data of a silica aerogel. The DLCA models of silica aerogels are analyzed for their mechanical properties with finite element simulations. There, the aerogel particles are modeled as nodes and the interparticle bonds as beam elements to account for bond stretching, bending, and torsion. The scaling relation between the elastic moduli E and relative density rho, E proportional to rho(m) , is investigated and the exponent m = 3.61 is determined. Backbone paths evidently appear in the 3-d network structure under deformation, while the majority of the bonds in the network do not bear loads. The sensitivity of particle neck-sizes on the mechanical properties is also studied. All the results are shown to be qualitatively as well as quantitatively in agreement with the experimental data or with the available literature.