Search for dissertations about: "Finite element displacement modes"
Showing result 1 - 5 of 9 swedish dissertations containing the words Finite element displacement modes.
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1. On experimental material damping estimation based on vibration response models and hybride modal analysis
Abstract : .... READ MORE
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2. Influence of microstructure on debonding at the fiber/matrix interface in fiber-reinforced polymers under tensile loading
Abstract : At the end of the second decade of the XXI century, the transportation industry at large faces several challenges that will shape its evolution in the next decade and beyond. The first such challenge is the increasing public awareness and governmental action on climate change, which are increasing the pressure on the industrial sectors responsible for the greatest share of emissions, the transportation industry being one of them, to reduce their environmental footprint. READ MORE
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3. Toward Realistic Failure Evaluations for Concrete Buttress Dams
Abstract : Concrete dams, complex structures supporting massive loads, have traditionally been assessed using simplified 2D analytical stability analyses based on the rigid body assumption. Previous studies have shown that 3D behavior, such as the interaction between the monoliths and the valley's geology, can greatly impact the load-bearing capacity of gravity dams but remains largely unexplored in buttress dams. READ MORE
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4. Reduced Order Modeling and Substructuring : Applications in Nonlinear Structural Dynamics
Abstract : A structural design process typically involves various load cases for which a sufficient load-bearing capacity must be demonstrated. In addition to static load cases, a verification of dynamic loads, such as blast and impact loading, may be required. READ MORE
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5. Strength of Sandwich Panels Loaded in In-plane Compression
Abstract : The use of composite materials in vehicle structures could reduce the weight and thereby the fuel consumption of vehicles. As the road safety of the vehicles must be ensured, it is vital that the energy absorbing capability of the composite materials are similar to or better than the commonly used steel structures. READ MORE