The fabrication of periodic microstructures on pure aluminum is studied in this work. Triangular and pillar-like structures are manufactured using nanosecond pulsed direct laser writing (DLW) and picosecond pulsed direct laser interference patterning (DLIP), respectively. By varying the process parameters (laser fluence, pulse to pulse overlap, pattern size and geometry) structures with different depths and corresponding roughness parameters are produced. Finally, the influence of the various resultant morphological parameters on the wettability properties of the fabricated structures is investigated by means of static contact angle measurements. Two different behaviors are observed with respect to the long term wetting properties depending...
We present a simple method for fabricating patterned surfaces that exhibit different wettabilities i...
The current availability of lasers with characteristic pulse lengths ranging from ns to fs has provi...
In this scientific study, the ability to modify the surface using nanosecond 1064 nm fiber laser by ...
In recent years, metal surfaces that could mimic the water repellence properties of some natural sur...
This study describes the fabrication of dot and line-like periodic surface structures on metals, usi...
Multi-scaled hierarchical surface microstructures are fabricated on Al2024 alloy using Direct Laser ...
Abstract In this work, the mechanism of the corrosion behavior of laser‐treated aluminum is studied....
This work addresses the fabrication of hydrophobic surface structures by means of direct laser inter...
This work addresses the fabrication of hydrophobic surface structures by means of direct laser inter...
In this work, the fabrication of multifunctional periodic microstructures on pure aluminium is prese...
In this work, the fabrication of multifunctional periodic microstructures on pure aluminium is prese...
In this work, hierarchical surface patterns fabricated on Ti-6Al-4V alloy combining two laser micro-...
Hierarchical surface patterns fabricated on Ti-6Al-4V alloy combining two laser micro-machining tech...
Laser-microtextured surfaces have gained an increasing interest due to their enormous spectrum of ap...
Hierarchical surface patterns fabricated on Ti-6Al-4V alloy combining two laser micro-machining tech...
We present a simple method for fabricating patterned surfaces that exhibit different wettabilities i...
The current availability of lasers with characteristic pulse lengths ranging from ns to fs has provi...
In this scientific study, the ability to modify the surface using nanosecond 1064 nm fiber laser by ...
In recent years, metal surfaces that could mimic the water repellence properties of some natural sur...
This study describes the fabrication of dot and line-like periodic surface structures on metals, usi...
Multi-scaled hierarchical surface microstructures are fabricated on Al2024 alloy using Direct Laser ...
Abstract In this work, the mechanism of the corrosion behavior of laser‐treated aluminum is studied....
This work addresses the fabrication of hydrophobic surface structures by means of direct laser inter...
This work addresses the fabrication of hydrophobic surface structures by means of direct laser inter...
In this work, the fabrication of multifunctional periodic microstructures on pure aluminium is prese...
In this work, the fabrication of multifunctional periodic microstructures on pure aluminium is prese...
In this work, hierarchical surface patterns fabricated on Ti-6Al-4V alloy combining two laser micro-...
Hierarchical surface patterns fabricated on Ti-6Al-4V alloy combining two laser micro-machining tech...
Laser-microtextured surfaces have gained an increasing interest due to their enormous spectrum of ap...
Hierarchical surface patterns fabricated on Ti-6Al-4V alloy combining two laser micro-machining tech...
We present a simple method for fabricating patterned surfaces that exhibit different wettabilities i...
The current availability of lasers with characteristic pulse lengths ranging from ns to fs has provi...
In this scientific study, the ability to modify the surface using nanosecond 1064 nm fiber laser by ...