Periodic surfaces structures with micrometer or submicrometer resolution produced on the surface of components can be used to improve their mechanical, biological or optical properties. In particular, these surfaces can control the tribological performance of parts, for instance in the automotive industry. In the recent years, substantial efforts have been made to develop new technologies capable to produce functionalized surfaces. One of these technologies is Direct Laser Interference Patterning (DLIP), which permits to combine high fabrication speed with high resolution even in the sub-micrometer range. In DLIP, a laser beam is split into two or more coherent beams which are guided to interfere on the work piece surface. This causes modul...
Direct Laser Interference Structuring (DLIP) is a manufacturing technology capable to functionalize ...
Surface structures in the micro- and nanometre length scale exert a major influence on performance a...
In this work, it is demonstrated that direct laser interference patterning (DLIP) is a method capabl...
Periodic surfaces structures with micrometer or submicrometer resolution produced on the surface of ...
Periodic surfaces structures with micrometer or submicrometer resolution produced on the surface of ...
Direct Laser Interference Structuring (DLIP) is a manufacturing technology capable to functionalize ...
Starting from a simple concept, transferring the shape of an interference pattern directly to the su...
Smart surfaces are a source of innovation in the 21^st Century. Potential applications can be found ...
Starting from a simple concept, transferring the shape of an interference pattern directly to the su...
This study describes the fabrication of dot and line-like periodic surface structures on metals, usi...
Smart surfaces are a source of innovation in the 21st Century. Potential applications can be found i...
Periodic patterned surfaces can be used to provide unique surface properties in applications, such a...
AbstractIn this study, we introduce a recently developed approach for the fabrication of two and thr...
Direct Laser Interference Patterning is an emerging technology capable to produce micro- and nanostr...
Direct laser interference patterning (DLIP) is a laser-based surface structuring method that stands ...
Direct Laser Interference Structuring (DLIP) is a manufacturing technology capable to functionalize ...
Surface structures in the micro- and nanometre length scale exert a major influence on performance a...
In this work, it is demonstrated that direct laser interference patterning (DLIP) is a method capabl...
Periodic surfaces structures with micrometer or submicrometer resolution produced on the surface of ...
Periodic surfaces structures with micrometer or submicrometer resolution produced on the surface of ...
Direct Laser Interference Structuring (DLIP) is a manufacturing technology capable to functionalize ...
Starting from a simple concept, transferring the shape of an interference pattern directly to the su...
Smart surfaces are a source of innovation in the 21^st Century. Potential applications can be found ...
Starting from a simple concept, transferring the shape of an interference pattern directly to the su...
This study describes the fabrication of dot and line-like periodic surface structures on metals, usi...
Smart surfaces are a source of innovation in the 21st Century. Potential applications can be found i...
Periodic patterned surfaces can be used to provide unique surface properties in applications, such a...
AbstractIn this study, we introduce a recently developed approach for the fabrication of two and thr...
Direct Laser Interference Patterning is an emerging technology capable to produce micro- and nanostr...
Direct laser interference patterning (DLIP) is a laser-based surface structuring method that stands ...
Direct Laser Interference Structuring (DLIP) is a manufacturing technology capable to functionalize ...
Surface structures in the micro- and nanometre length scale exert a major influence on performance a...
In this work, it is demonstrated that direct laser interference patterning (DLIP) is a method capabl...