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Titlebook: Anisotropic Behaviour of Damaged Materials; Jacek J. Skrzypek,Artur W. Ganczarski Conference proceedings 2003 Springer-Verlag Berlin Heide

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Towards a Theory of Optimal Roadsnite Element Method FEM (ABAQUS). The original total formulation of the Murakami-Kamiya (MK) model of elastic-damage material is extended and used for damage anisotropy and fracture prediction in concrete. The incremental formulation of the stress-strain equations is developed by the use of the tang
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Multiplier-Accelerator Models Revisitedrnal structure of ordinary concrete was compared with that detected in the same concrete but enriched by addition of the of steel fibers. To this end the standard cubical specimens of the concrete and fiber concrete were subjected to uni-axial compression. It was found that in the case of ordinary c
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Solution mechanisms and empirical data,of microcrack growth under tension and compression, non-linear stress-strain relationships are derived within the thermodynamic framework with microstructural internal variables. Illustrative examples are worked out and compared with experimental data. Based on the developed micromechanical models,
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On Renewable Energy in Rural Chinarned by the creep behaviour in localised regions of the welds. Efforts have been made to understand the characteristic features of the creep stress distributions in and the deformation behaviour of welds and to predict the failure life. One of the major factors that affects the life of a weldment is
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Jacek J. Skrzypek,Artur W. GanczarskiFirst book about anisotropic damage mechanics with micromechanical aspects and thermo-mechanical coupling involved
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ABDM Symposium — Conclusions, Other Directions of Research, Future TrendsContinuum damage mechanics in its carly stage of development of used scalar damage parameter introduced in 1958 by Kachnov. It corresponds to nucleation and growth of micro-voids and an initially isotropic material remains istropic. This approach, relatively simple, proved in many cases useful for rough estimation of the life-time of structures.
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