Structure, mechanics and failure of stochastic fibrous networks: microscale considerations, part I
Article Abstract:
The connectivity of stochastic fibrous networks material is quantitatively related to modulus and strength as determined by beam type and nodal connections. Data show that networks exhibit low-strain and nonlinear properties. Part I discusses simple constructions to model complex behavior of porous materials.
Publication Name: Journal of Engineering Materials and Technology
Subject: Science and technology
ISSN: 0094-4289
Year: 2000
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Structure, mechanics and failure of stochastic fibrous networks: network simulations and application, part II
Article Abstract:
The connectivity of stochastic fibrous networks material is quantitatively related to modulus and strength as determined by beam type and nodal connections. Data show that networks exhibit low-strain and nonlinear properties. Part II discusses effect of bonding, beam type, failure mode, and scale parameters on moduli and peak loads.
Publication Name: Journal of Engineering Materials and Technology
Subject: Science and technology
ISSN: 0094-4289
Year: 2000
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Transport in stochastic fibrous networks
Article Abstract:
Two methodologies are created and compared for determining the conductivity of stochastic fibrous networks. The results differ from those of classical approaches while allowing direct estimation of variances.
Publication Name: Journal of Engineering Materials and Technology
Subject: Science and technology
ISSN: 0094-4289
Year: 2001
User Contributions:
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