Multi-photon polymerization, like the so-called direct laser writing (DLW) technique allows for flexible additive manufacturing of three-dimensional ultra-precise structures on the micro- and nanoscale. A possible application for DLW is the manufacturing of measurement standards for calibration procedures of optical measurement instruments. This requires flexible and high precision manufacturing of individualized geometries with high quality surfaces. However, many of the process parameters in DLW have to be selected based on experience and previous knowledge. In this article, the influence of DLW process parameters on the micro-geometry and surface roughness produced are systematically studied, and optimized in terms of printing speed and ...
Direct laser writing (DLW) in transparent cross-linkable materials based on the non-linear interacti...
Background: The ability to fabricate components capable of performing actuation in a reliable and co...
The appearance of the ultrashort laser pulses opens up new possibilities in the materials processing...
The standard ISO 25178-70 defines material measures for the calibration of 2D- and 3D-topography mea...
Direct laser writing (DLW) is widely used for 3D material processing and printing. One of its realiz...
Direct laser writing (DLW) in transparent cross-linkable materials based on the non-linear interacti...
3D printing allows rapid fabrication of complex objects from digital designs. One 3D-printing proces...
Periodic surfaces structures with micrometer or submicrometer resolution produced on the surface of ...
Direct Laser Writing (DLW) is a technique nowadays employed for the efficient fabrication of trully ...
International audience3D Direct laser writing (3D DLW) based on two photon polymerization represents...
International audience3D Direct laser writing (3D DLW) based on two photon polymerization represents...
International audience3D Direct laser writing (3D DLW) based on two photon polymerization represents...
Periodic surfaces structures with micrometer or submicrometer resolution produced on the surface of ...
Microscale 3D printing technologies have been of increasing interest in industry and research for se...
Background: The ability to fabricate components capable of performing actuation in a reliable and co...
Direct laser writing (DLW) in transparent cross-linkable materials based on the non-linear interacti...
Background: The ability to fabricate components capable of performing actuation in a reliable and co...
The appearance of the ultrashort laser pulses opens up new possibilities in the materials processing...
The standard ISO 25178-70 defines material measures for the calibration of 2D- and 3D-topography mea...
Direct laser writing (DLW) is widely used for 3D material processing and printing. One of its realiz...
Direct laser writing (DLW) in transparent cross-linkable materials based on the non-linear interacti...
3D printing allows rapid fabrication of complex objects from digital designs. One 3D-printing proces...
Periodic surfaces structures with micrometer or submicrometer resolution produced on the surface of ...
Direct Laser Writing (DLW) is a technique nowadays employed for the efficient fabrication of trully ...
International audience3D Direct laser writing (3D DLW) based on two photon polymerization represents...
International audience3D Direct laser writing (3D DLW) based on two photon polymerization represents...
International audience3D Direct laser writing (3D DLW) based on two photon polymerization represents...
Periodic surfaces structures with micrometer or submicrometer resolution produced on the surface of ...
Microscale 3D printing technologies have been of increasing interest in industry and research for se...
Background: The ability to fabricate components capable of performing actuation in a reliable and co...
Direct laser writing (DLW) in transparent cross-linkable materials based on the non-linear interacti...
Background: The ability to fabricate components capable of performing actuation in a reliable and co...
The appearance of the ultrashort laser pulses opens up new possibilities in the materials processing...