Joining of Polymer-Metal Lightweight Structures Using Self-Piercing Riveting (SPR) Technique: Numerical Approach and Simulation Results

被引:1
作者
Amro, Elias [1 ,2 ]
Kouadri-Henni, Afia [1 ,2 ]
机构
[1] Natl Inst Appl Sci INSA Rennes, Tunis, Tunisia
[2] CNRS, ROMAS, Lab Digital Sci Nantes LS2N, UMR 6004, 1 Rue Noe, F-44300 Nantes, France
来源
PROCEEDINGS OF 21ST INTERNATIONAL ESAFORM CONFERENCE ON MATERIAL FORMING (ESAFORM 2018) | 2018年 / 1960卷
关键词
lightweight multi-material structures; high strength steel; SMC polyester thermoset; numerical modelling; homogenization; ALE formulation; SINGLE-LAP JOINTS; PANELS;
D O I
10.1063/1.5034874
中图分类号
O59 [应用物理学];
学科分类号
摘要
Restrictions in pollutant emissions dictated at the European Commission level in the past few years have urged mass production car manufacturers to engage rapidly several strategies in order to reduce significantly the energy consumption of their vehicles. One of the most relevant taken action is light-weighting of body in white (BIW) structures, concretely visible with the increased introduction of polymer-based composite materials reinforced by carbon/glass fibers. However, the design and manufacturing of such "hybrid" structures is limiting the use of conventional assembly techniques like resistance spot welding (RSW) which are not transferable as they are for polymer-metal joining. This research aims at developing a joining technique that would eventually enable the assembly of a sheet molding compound (SMC) polyester thermoset-made component on a structure composed of several high strength steel grades. The state of the art of polymer-metal joining techniques highlighted the few ones potentially able to respond to the industrial challenge, which are: structural bonding, self-piercing riveting (SPR), direct laser joining and friction spot welding (FSpW). In this study, the promising SPR technique is investigated. Modelling of SPR process in the case of polymer-metal joining was performed through the building of a 2D axisymmetric FE model using the commercial code Abaqus CAE 6.10-1. Details of the numerical approach are presented with a particular attention to the composite sheet for which Mori-Tanaka's homogenization method is used in order to estimate overall mechanical properties. Large deformations induced by the riveting process are enabled with the use of a mixed finite element formulation ALE (arbitrary Lagrangian-Eulerian). FE model predictions are compared with experimental data followed by a discussion.
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页数:6
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