Archive:Micromechanics of composites: Difference between revisions
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Welcome to this learning project about '''{{PAGENAME}}'''! | Welcome to this learning project about '''{{PAGENAME}}'''! | ||
==Learning Project Summary== | ==Learning Project Summary== | ||
* '''Project code:''' | * '''Project code:''' | ||
* '''Suggested Prerequisites:''' | * '''Suggested Prerequisites:''' | ||
** | ** [[Introduction to Elasticity]] | ||
* '''Time investment:''' | ** [[Continuum mechanics]] | ||
* '''Time investment:''' 6 months | |||
* '''Assessment suggestions:''' | * '''Assessment suggestions:''' | ||
* '''[[Wikiversity:Major portals|Portal]]: | * '''[[Wikiversity:Major portals|Portal]]:[[Portal:Engineering and Technology|Enegineering and Technology]]''' | ||
* '''[[Wikiversity:Schools|School]]: | * '''[[Wikiversity:Schools|School]]:[[School:Engineering|Engineering]]''' | ||
* '''Department:''' | * '''Department:[[Topic:Mechanical engineering|Mechanical Engineering]]''' | ||
* '''Stream''' | * '''Stream:[[Topic:Applied Mechanics|Applied Mechanics]]''' | ||
* '''Level:''' | * '''Level:''' Second year graduate | ||
==Content summary== | ==Content summary== | ||
This course is the micromechanics of composites. The purspose is to show you way in which micromechanics may be used to determine the effective properties of composite materials. | |||
==Goals== | ==Goals== | ||
This learning project aims to.. | This learning project aims to | ||
* Show you some of the fundamental theorems in the micromechanics of composites. | |||
* Give you a feel for how the theory can be used to determine the effective properties of composites. | |||
* Give you an idea about numerical approaches based on the theory. | |||
==Contents== | ==Contents== | ||
===Learning materials=== | ===Learning materials=== | ||
# Review of some basic continuum mechanics | |||
## [[\Conservation of mass|Conservation of mass]] | |||
## [[\Balance of linear momentum|Balance of linear momentum]] | |||
## [[\Balance of angular momentum|Balance of angular momentum]] | |||
## [[\Balance of energy|Balance of energy]] | |||
# Some basic ideas of micromechanics | |||
## [[\Introduction|The RVE and governing equations]] | |||
## [[\Infinitesimal deformations|Infinitesimal deformations]] | |||
### [[\Average strain in a RVE|Average strain in a RVE]] | |||
### [[\Average displacement in a RVE|Average displacement in a RVE]] | |||
### [[\Average stress in a RVE|Average stress in a RVE]] | |||
### [[\Average stress power in a RVE|Average stress power in a RVE]] | |||
## [[\Finite deformations|Finite deformations]] | |||
### [[\Average deformation gradient in a RVE|Average deformation gradient in a RVE]] | |||
### [[\Average velocity gradient in a RVE|Average velocity gradient in a RVE]] | |||
### [[\Average stress in a RVE with finite strain|Average stress in a RVE]] | |||
### [[\Average stress power in a RVE with finite strain|Average stress power in a RVE]] | |||
# Appendix: Some useful results and proofs | |||
## [[\Proof 1|Proof 1]] | |||
## [[\Proof 2|Proof 2]] | |||
## [[\Proof 3|Proof 3]] | |||
===Readings and other resources=== | ===Readings and other resources=== | ||
{{Sisterprojectsearch}} | {{Sisterprojectsearch}} | ||
==== Primary texts ==== | |||
* S. Nemat-Nasser and M. Hori, 1993, '''Micromechanics: Overall Properties of Heterogeneous Materials''', North-Holland. | |||
* ''' | * G. W. Milton, 2002, '''The Theory of Composites''', Cambridge University Press. | ||
* ''' | * S. Torquato, 2002, '''Random Heterogeneous Materials''', Springer. | ||
* | |||
== | ==== Other reading materials ==== | ||
* T. Belytschko, W. K. Liu, and B. Moran. '' Nonlinear Finite Elements for Continua and Structures''. John Wiley and Sons, Ltd., New York, 2000. | |||
* J. Bonet and R. D. Wood. '' Nonlinear Continuum Mechanics for Finite Element Analysis''. Cambridge University Press, 1997. | |||
* F. Costanzo, G. L. Gray, and P. C. Andia. On the definitions of effective stress and deformation gradient for use in MD: Hill's macro-homogeneity and the virial theorem. '' Int. J. Engg. Sci.'', 43:533--555, 1985. | |||
* P. Chadwick. '' Continuum Mechanics: Concise Theory and Problems''. George Allen and Unwin Ltd., London, 1976. | |||
* M. E. Gurtin. The linear theory of elasticity. In C.~Truesdell, editor, ''Encyclopedia of Physics (Handbuch der Physik)'', volume VIa/2, pages 1--295. Springer-Verlag, Berlin, 1972. | |||
* M. E. Gurtin. '' An Introduction to Continuum Mechanics''. Academic Press, New York, 1981. | |||
* R. Hill. Elastic properties of reinforced solids : some theoretical principles. '' J. Mech. Phys. Solids'', 11:357--372, 1963. | |||
* R. Hill. Theory of mechanical properties of fibre-strengthened materials: I. Elastic behavior. '' J. Mech. Phys. Solids'', 12:199--212, 1964. | |||
* R. Hill. On constitutive macro-variables for heterogeneous solids at finite strain. '' Proc. Royal Soc. Lond. A'', 326:131--147, 1972. | |||
* R. Hill. On macroscopic effects of heterogeneity in elastoplastic media at finite strain. '' Math. Proc. Camb. Phil. Soc'', 95:481--495, 1984. | |||
* S. Nemat-Nasser. Averaging theorems in finite deformation plasticity. '' Mechanics of Materials'', 31:493--523, 1999. | |||
* S. Nemat-Nasser. ''Plasticity: A Treatise on Finite Deformation of Heteogeneous Inelastic Materials''. Cambridge University Press, Cambridge, 2004. | |||
* P. Perzyna. Constitutive equations for thermoinelasticity and instability phenomena in thermodynamic flow processes. In Stein E., editor, ''Progress in Computational Analysis of Inelastic Structures: CISM Courses and Lectures No. 321'', pages 1--78. Springer-Verlag-Wien, New York, 1993. | |||
* W. S. Slaughter. '' The Linearized Theory of Elasticity''. Birhhauser, Boston, 2002. | |||
* C. Truesdell and W. Noll. '' The Non-linear Field Theories of Mechanics''. Springer-Verlag, New York, 1992. | |||
* T. W. Wright. '' The Physics and Mathematics of Adiabatic Shear Bands''. Cambridge University Press, Cambridge, UK, 2002. | |||
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[[Category: | [[Category:Micromechanics]] | ||
[[Category:Elasticity]] | |||
[[Category:Solid mechanics]] | |||
[[Category:Applied Mechanics]] | |||
[[Category:Mechanical engineering]] | |||
[[Category:Courses]] | |||
Revision as of 00:23, 21 August 2007
Welcome to this learning project about Micromechanics of composites!
Learning Project Summary
- Project code:
- Suggested Prerequisites:
- Time investment: 6 months
- Assessment suggestions:
- Portal:Enegineering and Technology
- School:Engineering
- Department:Mechanical Engineering
- Stream:Applied Mechanics
- Level: Second year graduate
Content summary
This course is the micromechanics of composites. The purspose is to show you way in which micromechanics may be used to determine the effective properties of composite materials.
Goals
This learning project aims to
- Show you some of the fundamental theorems in the micromechanics of composites.
- Give you a feel for how the theory can be used to determine the effective properties of composites.
- Give you an idea about numerical approaches based on the theory.
Contents
Learning materials
- Review of some basic continuum mechanics
- Some basic ideas of micromechanics
- Appendix: Some useful results and proofs
Readings and other resources
| Find more information on Micromechanics of composites by searching Wikademia's sister projects | |
|---|---|
| Encyclopedia articles from Wikipedia | |
| Dictionary definitions from Wiktionary | |
| Textbooks from Wikibooks | |
| Quotations from Wikiquote | |
| Source texts from Wikisource | |
| Images and media from Commons | |
| News stories from Wikinews | |
Primary texts
- S. Nemat-Nasser and M. Hori, 1993, Micromechanics: Overall Properties of Heterogeneous Materials, North-Holland.
- G. W. Milton, 2002, The Theory of Composites, Cambridge University Press.
- S. Torquato, 2002, Random Heterogeneous Materials, Springer.
Other reading materials
- T. Belytschko, W. K. Liu, and B. Moran. Nonlinear Finite Elements for Continua and Structures. John Wiley and Sons, Ltd., New York, 2000.
- J. Bonet and R. D. Wood. Nonlinear Continuum Mechanics for Finite Element Analysis. Cambridge University Press, 1997.
- F. Costanzo, G. L. Gray, and P. C. Andia. On the definitions of effective stress and deformation gradient for use in MD: Hill's macro-homogeneity and the virial theorem. Int. J. Engg. Sci., 43:533--555, 1985.
- P. Chadwick. Continuum Mechanics: Concise Theory and Problems. George Allen and Unwin Ltd., London, 1976.
- M. E. Gurtin. The linear theory of elasticity. In C.~Truesdell, editor, Encyclopedia of Physics (Handbuch der Physik), volume VIa/2, pages 1--295. Springer-Verlag, Berlin, 1972.
- M. E. Gurtin. An Introduction to Continuum Mechanics. Academic Press, New York, 1981.
- R. Hill. Elastic properties of reinforced solids : some theoretical principles. J. Mech. Phys. Solids, 11:357--372, 1963.
- R. Hill. Theory of mechanical properties of fibre-strengthened materials: I. Elastic behavior. J. Mech. Phys. Solids, 12:199--212, 1964.
- R. Hill. On constitutive macro-variables for heterogeneous solids at finite strain. Proc. Royal Soc. Lond. A, 326:131--147, 1972.
- R. Hill. On macroscopic effects of heterogeneity in elastoplastic media at finite strain. Math. Proc. Camb. Phil. Soc, 95:481--495, 1984.
- S. Nemat-Nasser. Averaging theorems in finite deformation plasticity. Mechanics of Materials, 31:493--523, 1999.
- S. Nemat-Nasser. Plasticity: A Treatise on Finite Deformation of Heteogeneous Inelastic Materials. Cambridge University Press, Cambridge, 2004.
- P. Perzyna. Constitutive equations for thermoinelasticity and instability phenomena in thermodynamic flow processes. In Stein E., editor, Progress in Computational Analysis of Inelastic Structures: CISM Courses and Lectures No. 321, pages 1--78. Springer-Verlag-Wien, New York, 1993.
- W. S. Slaughter. The Linearized Theory of Elasticity. Birhhauser, Boston, 2002.
- C. Truesdell and W. Noll. The Non-linear Field Theories of Mechanics. Springer-Verlag, New York, 1992.
- T. W. Wright. The Physics and Mathematics of Adiabatic Shear Bands. Cambridge University Press, Cambridge, UK, 2002.
|
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