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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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Conference proceedings 2003BDM, held in Krakow-Przegorzaiy, Poland, September 9-11, 2002. The Symposium was organized by the Solid Mechanics Division of the Institute of Mechanics and Machine Design - Cracow University of Technology, under aus­ pices of the Dean of the Faculty of Mechanical Engineering, Cracow University of T
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Applications of Tensor Functions in Damage Mechanics of Anisotropic Materialsiary creep phase is accompanied by the formation of microscopic cracks on the grain boundaries, so that damage accumulation occurs..The damage state in a uni-axial tension specimen is discussed and the time to rupture has been calculated..Then, the paper is concerned with the creep behaviour of mate
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Multiscale Structural Analyses Incorporating Damage Mechanics at the Meso- or Micro-Scalescluding some recent modeling capabilities. The approach is based on the Transformation Field Analysis (TFA) promoted by Dvorak..A correction method is proposed in order to obtain a softer overall hardening response in case of the model restriction to only two subdomains (the elastic fibre, and the e
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Failure Criteria and Compliance Variation of Anisotropically Damaged Materialstribution function specifying the damage state on any physical plane. This approach is assumed in the paper. First, the limit state failure condition for a material element is specified by assuming crack density distribution on physical planes. The critical plane approach is next used and the limit
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On Description of Damages of stress (usually one-dimensional). These models are next generalized to the 3D case and more complex states of stress..In contrary this chapter is concerned with mathematical model of damage evolution within the framework of the non-linear theory of continuous media. Such approach guaranties con
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