Please use this identifier to cite or link to this item: https://www.um.edu.mt/library/oar/handle/123456789/90847
Title: Alternative simulation techniques for distortion of thin plate due to fillet-welded stiffeners
Authors: Camilleri, Duncan
Mollicone, Pierluigi
Gray, T. G. F.
Keywords: Welding -- Data processing
Thermal stresses
Weld thermal simulators
Plates (Engineering) -- Thermal properties
Fillets (Engineering)
Welding -- Mathematical models
Issue Date: 2006
Publisher: Institute of Physics Publishing Ltd.
Citation: Camilleri, D., Mollicone, P., & Gray, T. G. F. (2006). Alternative simulation techniques for distortion of thin plate due to fillet-welded stiffeners. Modelling and Simulation in Materials Science and Engineering, 14(8), 1307-1327.
Abstract: This study aims to develop and validate a wide-ranging simulation tool to predict welding distortion in stiffened plates and shells, with particular emphasis on out-of-plane deformation. The approach adopted in this study uncouples the thermal, elasto-plastic and structural effects leading to distortion. The computational models and results are supported by realistic welding tests and appropriate measurements to validate the simulated thermal fields and out-ofplane distortions. The simplest and most computationally efficient model makes use of algorithms, instead of numerical computation, to link the thermal welding strains to the elasto-plastic and structural responses of the welded assembly, via a static, single-load-step analysis. Alternative, more computationally intensive models are explored which simulate the full transient thermal and elastoplastic structural responses in an uncoupled fashion. These provide a crossreference for the more rudimentary but computationally efficient models. The experiments and computational strategies are applied to welded assemblies incorporating double-fillet-welded stiffeners.
URI: https://www.um.edu.mt/library/oar/handle/123456789/90847
Appears in Collections:Scholarly Works - FacEngME

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