Innovative multi-material lightweight construction enables reducing dead weight while maintaining and preferably boosting the components' performance. The implementation of multi-material parts (e.g., plastic-metal-components) requires reliable joining processes since a direct connection between these materials is not feasible due to their different physical and chemical properties. In order to avoid additional weight through adhesive bonding, riveting or fasteners, thermal direct joining with a modified metal surface is a promising approach. Within a first process step, the metal surface is modified by laser-microstructuring. To enlarge the boundary surface and create undercut structures, random self-organizing micro- and nanostructures ar...
To join plastic to metal a laser based two-step laser process is described. The first process step i...
AbstractThermal joining of laser-structured metals and thermoplastics has been proven to deliver a h...
Plastic-metal hybrids are replacing all-metal structures in the automotive, aerospace and other indu...
AbstractThe combination of different materials such as thermoplastic composites and metals is an imp...
The combination of different materials such as thermoplastic composites and metals is an important w...
Multi-material construction enables new approaches to lightweight production by using the right mate...
Particularly in the automotive industry, the combination of dissimilar materials presents manufactur...
AbstractParticularly in the automotive industry, the combination of dissimilar materials presents ma...
Multi-material lightweight construction enables reducing dead weight while maintaining and preferabl...
Lightweight construction is a central technology in today’s industrial production. One way to achiev...
In the field of lightweight construction load-capable mixing compounds with the material specific ad...
AbstractTo join plastic to metal a laser based two-step laser process is described. The first proces...
Joining of dissimilar materials is gaining more and more importance especially in the automotive ind...
AbstractHybrid components combine the contradictory characteristics of plastics and metal and thus c...
The increasing use of plastics as a construction material has given rise to the problem of how to jo...
To join plastic to metal a laser based two-step laser process is described. The first process step i...
AbstractThermal joining of laser-structured metals and thermoplastics has been proven to deliver a h...
Plastic-metal hybrids are replacing all-metal structures in the automotive, aerospace and other indu...
AbstractThe combination of different materials such as thermoplastic composites and metals is an imp...
The combination of different materials such as thermoplastic composites and metals is an important w...
Multi-material construction enables new approaches to lightweight production by using the right mate...
Particularly in the automotive industry, the combination of dissimilar materials presents manufactur...
AbstractParticularly in the automotive industry, the combination of dissimilar materials presents ma...
Multi-material lightweight construction enables reducing dead weight while maintaining and preferabl...
Lightweight construction is a central technology in today’s industrial production. One way to achiev...
In the field of lightweight construction load-capable mixing compounds with the material specific ad...
AbstractTo join plastic to metal a laser based two-step laser process is described. The first proces...
Joining of dissimilar materials is gaining more and more importance especially in the automotive ind...
AbstractHybrid components combine the contradictory characteristics of plastics and metal and thus c...
The increasing use of plastics as a construction material has given rise to the problem of how to jo...
To join plastic to metal a laser based two-step laser process is described. The first process step i...
AbstractThermal joining of laser-structured metals and thermoplastics has been proven to deliver a h...
Plastic-metal hybrids are replacing all-metal structures in the automotive, aerospace and other indu...