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- W2296205827 abstract "This paper aims at developing homogeneous, anisotropic strain-gradient continuum models as substitutes of 3D heterogeneous porous or composite materials and structures. We construct effective first and second order grade continuum models equivalent to such inhomogeneous structures. This in turn leads to the construction of a strain-gradient continuum with effective mechanical properties at the first and second order, accounting for the impact of the underlying microstructure on the overall effective mechanical response of the effective continuum. The effective properties are obtained based on the response of the representative volume element or unit cell of the initial structure under prescribed boundary conditions. Mixed boundary conditions comprising both traction and displacement boundary conditions are applied on the structure boundaries to identify the equivalent 3D strain gradient elasticity. The first and second order mechanical constants of the effective strain-gradient continuum are deduced by an equivalent strain energy method. We perform this study computationally using a finite element approach. The present methodology is exemplified in certain applications, considering sequentially three-dimensional random porous polymer scaffolds, composite reinforced by inclusions, and woven composites, including layered composites and 3D through-thickness orthogonal interlocks." @default.
- W2296205827 created "2016-06-24" @default.
- W2296205827 creator A5060620926 @default.
- W2296205827 creator A5075740313 @default.
- W2296205827 date "2016-05-01" @default.
- W2296205827 modified "2023-10-17" @default.
- W2296205827 title "Construction of first and second order grade anisotropic continuum media for 3D porous and textile composite structures" @default.
- W2296205827 cites W116439275 @default.
- W2296205827 cites W1189497218 @default.
- W2296205827 cites W1967480107 @default.
- W2296205827 cites W1967848324 @default.
- W2296205827 cites W1969819509 @default.
- W2296205827 cites W1970269511 @default.
- W2296205827 cites W1971380564 @default.
- W2296205827 cites W1976205741 @default.
- W2296205827 cites W1976469155 @default.
- W2296205827 cites W1980724638 @default.
- W2296205827 cites W1980739957 @default.
- W2296205827 cites W1981160227 @default.
- W2296205827 cites W1984420490 @default.
- W2296205827 cites W1987456727 @default.
- W2296205827 cites W1989459215 @default.
- W2296205827 cites W1989581196 @default.
- W2296205827 cites W1989660032 @default.
- W2296205827 cites W1989842584 @default.
- W2296205827 cites W1991395167 @default.
- W2296205827 cites W1994067762 @default.
- W2296205827 cites W1994613320 @default.
- W2296205827 cites W1996814485 @default.
- W2296205827 cites W1997090771 @default.
- W2296205827 cites W1999544762 @default.
- W2296205827 cites W1999963848 @default.
- W2296205827 cites W2003466811 @default.
- W2296205827 cites W2003905980 @default.
- W2296205827 cites W2004910614 @default.
- W2296205827 cites W2006413388 @default.
- W2296205827 cites W2007212433 @default.
- W2296205827 cites W2011542676 @default.
- W2296205827 cites W2013019768 @default.
- W2296205827 cites W2013078711 @default.
- W2296205827 cites W2013715428 @default.
- W2296205827 cites W2019373699 @default.
- W2296205827 cites W2021252942 @default.
- W2296205827 cites W2026597409 @default.
- W2296205827 cites W2027356414 @default.
- W2296205827 cites W2027984239 @default.
- W2296205827 cites W2035278410 @default.
- W2296205827 cites W2039612290 @default.
- W2296205827 cites W2039891364 @default.
- W2296205827 cites W2040721015 @default.
- W2296205827 cites W2042676776 @default.
- W2296205827 cites W2043425930 @default.
- W2296205827 cites W2049058362 @default.
- W2296205827 cites W2049320810 @default.
- W2296205827 cites W2050212675 @default.
- W2296205827 cites W2050236916 @default.
- W2296205827 cites W2052262257 @default.
- W2296205827 cites W2053917269 @default.
- W2296205827 cites W2055416943 @default.
- W2296205827 cites W2056107752 @default.
- W2296205827 cites W2057244981 @default.
- W2296205827 cites W2059288873 @default.
- W2296205827 cites W2063627308 @default.
- W2296205827 cites W2063745031 @default.
- W2296205827 cites W2070940226 @default.
- W2296205827 cites W2072954894 @default.
- W2296205827 cites W2073686198 @default.
- W2296205827 cites W2077206651 @default.
- W2296205827 cites W2078950802 @default.
- W2296205827 cites W2081014120 @default.
- W2296205827 cites W2082376727 @default.
- W2296205827 cites W2084113519 @default.
- W2296205827 cites W2084610464 @default.
- W2296205827 cites W2085850678 @default.
- W2296205827 cites W2091727318 @default.
- W2296205827 cites W2094132678 @default.
- W2296205827 cites W2096105657 @default.
- W2296205827 cites W2106085233 @default.
- W2296205827 cites W2115746002 @default.
- W2296205827 cites W2124709520 @default.
- W2296205827 cites W2129497937 @default.
- W2296205827 cites W2153052962 @default.
- W2296205827 cites W2154940804 @default.
- W2296205827 cites W2162482436 @default.
- W2296205827 cites W2164263066 @default.
- W2296205827 cites W2165084730 @default.
- W2296205827 cites W2170156039 @default.
- W2296205827 cites W2215069115 @default.
- W2296205827 cites W2222900958 @default.
- W2296205827 cites W2335071822 @default.
- W2296205827 cites W2573229294 @default.
- W2296205827 cites W4245290606 @default.
- W2296205827 cites W870855466 @default.
- W2296205827 doi "https://doi.org/10.1016/j.compstruct.2016.01.061" @default.
- W2296205827 hasPublicationYear "2016" @default.
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