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Titlebook: Quasidifferentiability and Nonsmooth Modelling in Mechanics, Engineering and Economics; Vladimir F. Dem’yanov,Georgios E. Stavroulakis,Pan

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correlation. The experimental data was used as input to the macro-damage (time-depend macro-damage) model. The experimental setup, specimen preparation was presented, as well as a critical local damage-initiation related to the orientation of the layers and cracking density were discussed.
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Book 1996y existing mathematically soundtechnique for the formulation and study of nonconvex, nonsmooth energyproblems. ..Audience:. The book will be of interest to pure and appliedmathematicians, physicists, researchers in mechanics, civil,mechanical and aeronautical engineers, structural analysts andsoftwa
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Vladimir F. Dem’yanov,Georgios E. Stavroulakis,Ludmila N. Polyakova,Panagiotis D. Panagiotopoulosmartensite. The phase transformation rate is significantly affected by the strain rate and by the adiabatic heating at higher strain rates. Uncoupling of the effects of strain rate and adiabatic heating can lead to a better understanding of the strain-induced martensitic transformation and allow mor
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Vladimir F. Dem’yanov,Georgios E. Stavroulakis,Ludmila N. Polyakova,Panagiotis D. Panagiotopoulosent model (FEM) performed by experimental modal analysis (EMA) is discussed. The finite volume model (FVM) is established to analyze the aerodynamic and thermal effects under working conditions by computational fluid dynamics (CFD). With the consideration of loading conditions coupled with the resul
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Vladimir F. Dem’yanov,Georgios E. Stavroulakis,Ludmila N. Polyakova,Panagiotis D. Panagiotopoulosty combinations are investigated. CFRP samples are also subjected to impact at room temperature (23 °C) and low-temperature (−70 °C) conditions with the aim to understand composite behavior in cold Arctic environment. Furthermore, this study explores the effect of ice formed on substrate surface, so
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damage in shale materials under dynamic loading conditions will support the development and improve current extraction techniques. An experimental–analytical approach was developed in this work to observe microcrack growth under dynamic stress loading conditions. The developed method was used to mea
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Nonsmooth Computational Mechanics,omputational mechanics algorithms and the link with the here proposed methods are also given. The techniques are illustrated by means of numerical examples. This Chapter concerns pilot applications which can be followed for the numerical treatment of other quasidifferential models in engineering.
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