micromechanics
Sign in to saveMicromechanics (or, more precisely, micromechanics of materials) is the analysis of heterogeneous materials including of composite, and anisotropic and orthotropic materials on the level of the individual constituents that constitute them and their interactions.
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Article
13 sectionsContents
- Aims of micromechanics of materials
- Generality on micromechanics
- Analytical methods of continuum micromechanics
- Numerical approaches to continuum micromechanics
- Methods based on [[Finite Element Analysis]] (FEA)
- Mechanics of Structure Genome (MSG)
- Generalized Method of Cells (GMC)
- Fast Fourier Transforms (FFT)
- Volume Elements
- See also
- References
- Further reading
- External links
Micromechanics (or, more precisely, micromechanics of materials) is the analysis of heterogeneous materials including of composite, and anisotropic and orthotropic materials on the level of the individual constituents that constitute them and their interactions.
== Aims of micromechanics of materials ==
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isotropy
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microstructure
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bone
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International Standard Book Number
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digital object identifier
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fiber
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foam
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elasticity
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mechanical stress
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JSTOR
Organization
bibcode
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tensor
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displacement
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periodic function
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Q118398
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deformation
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continuum mechanics
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analysis
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thermal conduction
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composite material
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