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Titlebook: Composites for Building Assembly; Connections, Members Yu Bai Book 2023 The Editor(s) (if applicable) and The Author(s), under exclusive li

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Thermodynamisches Variationsverfahrenotation curves and strain responses. Parametric studies were then undertaken to investigate the structural behaviour of the bonded sleeve connections considering the effects of major design parameters such as endplate thickness, bonding length, number of bolts, etc. It was found that the endplate th
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Virialentwicklung zweiter Ordnungerimental results agree well in terms of hysteretic moment-rotation responses, ductility and energy dissipation capacity. Further parametric study of the endplate thickness provides evidence that reduction in endplate thickness may decrease the moment capacity with satisfactory ductility and energy
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Verbindung mit der Thermodynamik, Entropieects of design parameters including bond length and adherend stiffness ratio, again validated by FE results. An effective bond length can be calculated by the theoretical formulation for the joint capacity at both the elastic limit and the ultimate state. Given a bond length, an optimal adherend sti
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https://doi.org/10.1007/3-540-29381-7bers and connections using pultruded GFRP composites, in consideration of their distinct material features. Experimental and modelling investigations have shown results of their mechanical performance of the developed structural members and connections in terms of stiffness, strength or even ductili
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2366-259X ell as descriptions to i) introduce a series of innovative structural components and connections and their assemblies and ii) illustrate their performance compared to existing solutions and criteria. This book 978-981-19-4280-8978-981-19-4278-5Series ISSN 2366-259X Series E-ISSN 2366-2603
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