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  4. Variation simulation of welded assemblies using a thermo-elastic finite element model
 
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2014
Conference Paper
Title

Variation simulation of welded assemblies using a thermo-elastic finite element model

Abstract
Every series of manufactured products has geometric variation. Variation can lead to products that are difficult to assemble or products not fulfilling functional or aesthetical requirements. In this paper, we will consider the effects of welding in variation simulation. Earlier work that have been combining variation simulation with welding simulation have either applied distortion based on nominal welding conditions onto the variation simulation result, hence loosing combination effects, or have used transient thermo-elasto-plastic simulation, which can be very time consuming since the number of runs required for statistical accuracy can be high. Here, we will present a new method to include the effects of welding in variation simulation. It is based on a technique that uses a thermo-elastic model, which previously has been shown to give distortion prediction within reasonable accuracy. This technique is suited for variation simulations due to the relative short compu tation times compared to conventional transient thermo-elasto-plastic simulations of welding phenomena. In a case study, it is shown that the presented method is able to give good predictions of both welding distortion and variation of welding distortions compared to transient thermo-elasto-plastic simulations. Copyright
Author(s)
Lorin, S.
Cromvik, C.
Edelvik, F.
Lindkvist, L.
Mainwork
ASME International Mechanical Engineering Congress and Exposition 2013. Proceedings. Vol.2: Advanced manufacturing. Part A  
Conference
International Mechanical Engineering Congress and Exposition (IMECE) 2013  
DOI
10.1115/IMECE2013-64512
Language
English
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