JoiningTWIP project aims to support the introduction of TWIP-steels for automotive applications (in cars, trucks and buses) by identifying possible applications and further developing mechanical and low-heat joining technologies to be able to implement multi-material design with TWIP-steels. To guarantee a full view of the project team members from steel industry, car manufacturers, joining technology suppliers and universities are working together. This work describes the simulation stage of the different technologies. During the project, the materials described in the scope of the project were tested in order to obtain material characterization. Also, the different multi-material joints were tested to describe the joining process and t...
Manufacturing thin-walled structures and products inevitably involves the selection of suited joinin...
The increasing usage of innovative light weight concepts in automobile production leads to the appli...
Mechanical joining technologies are increasingly used in multi-material lightweight constructions an...
A widespread usage of new advanced high strength TWIP steels in the automotive industry is condition...
The paradigm shift from heavy, often metallic structures to lightweight, multi-material structures i...
The technique of joining two or more different panels is called as Tailor Welded Blank (TWB). The pa...
The trend to use multi-material structures in automotive lightweight design leads to an increasing d...
A laser welded blank for use in applications calling for tailor welded blank (TWB) in vehicle panel ...
In the present study, Resistance Spot Welding (RSW), Self-Piercing Riveting (SPR), Kerb Konus Riveti...
As the Guest Editor of this Special Issue entitled ""Science, Characterization, and Technology of Jo...
The growing demand for more environmentally friendly vehicles has led to an increased use of light m...
In this paper, the objective is to study Quality comparison between different type methods of joinin...
From an industrial point of view, joining technologies play a key role nowadays, due to the continuo...
The growing demand for more environmentally friendly vehicles has led to an increased use of light m...
Due to their high strength (tensile strength < 1GPa) in combination with an extreme ductility (failu...
Manufacturing thin-walled structures and products inevitably involves the selection of suited joinin...
The increasing usage of innovative light weight concepts in automobile production leads to the appli...
Mechanical joining technologies are increasingly used in multi-material lightweight constructions an...
A widespread usage of new advanced high strength TWIP steels in the automotive industry is condition...
The paradigm shift from heavy, often metallic structures to lightweight, multi-material structures i...
The technique of joining two or more different panels is called as Tailor Welded Blank (TWB). The pa...
The trend to use multi-material structures in automotive lightweight design leads to an increasing d...
A laser welded blank for use in applications calling for tailor welded blank (TWB) in vehicle panel ...
In the present study, Resistance Spot Welding (RSW), Self-Piercing Riveting (SPR), Kerb Konus Riveti...
As the Guest Editor of this Special Issue entitled ""Science, Characterization, and Technology of Jo...
The growing demand for more environmentally friendly vehicles has led to an increased use of light m...
In this paper, the objective is to study Quality comparison between different type methods of joinin...
From an industrial point of view, joining technologies play a key role nowadays, due to the continuo...
The growing demand for more environmentally friendly vehicles has led to an increased use of light m...
Due to their high strength (tensile strength < 1GPa) in combination with an extreme ductility (failu...
Manufacturing thin-walled structures and products inevitably involves the selection of suited joinin...
The increasing usage of innovative light weight concepts in automobile production leads to the appli...
Mechanical joining technologies are increasingly used in multi-material lightweight constructions an...