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Micro-Mechanics of Failure
出典:『Wikipedia』 (2011/04/05 23:55 UTC 版)
Micro-Mechanics of Failure (MMF) is a newly proposed methodology, providing a more logical explanation of failure mechanism of continuous fiber reinforced composites than other phenomenological models such as Tsai-Wu and Hashin failure criteria. The basic concept of MMF is to perform failure analysis of fiber reinforced composites, based upon micro stresses in each constituent (fiber, matrix, and fiber-matrix interface) calculated from macro stresses at the ply level. The hierarchy of micromechanics-based analysis procedure for composite structures is shown in Figure 1: starting from mechanical behavior of constituents, i.e., the fiber, the matrix, and the interface, the mechanical behavior of a ply, a laminate, and eventually a structure, can be predicted. At the constituent level, three elements are required to fully characterize each constituent:
- Constitutive relation, which describes the transient or time-independent response of the constituent to external mechanical as well as hygrothermal loadings;
- Master curve, which describes the time-dependent behavior of the constituent under creep or fatigue loadings;
- Failure criterion, which describes conditions that cause failure of the constituent.
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Text is available under Creative Commons Attribution-ShareAlike (CC-BY-SA) and/or GNU Free Documentation License (GFDL). Weblio英和・和英辞典に掲載されている「Wikipedia英語版」の記事は、WikipediaのMicro-Mechanics of Failure (改訂履歴)の記事を複製、再配布したものにあたり、Creative Commons Attribution-ShareAlike (CC-BY-SA)もしくはGNU Free Documentation Licenseというライセンスの下で提供されています。 |
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