In this work, we present the results obtained by femtosecond laser processing of AISI D2 steel and the widely applicable titanium-based alloy, Ti6Al4V. Patterning the materials surfaces was done by a Ti: sapphire system at 775 nm wavelength and 200 fs pulse duration, while varying the output pulse energies and the scanning speed. The formation of laser-induced periodical surface structures were found for both materials.4th International School and Conference on Photonics, Aug 26-30, 2013, Belgrade, Serbi
Controlling laser induced surface morphology is essential for developing specialized functional surf...
yesColor marking of rough or smooth metal (Al, Cu, Ti) and semiconductor (Si) surfaces was realized ...
Controlling laser induced surface morphology is essential for developing specialized functional surf...
Surface texturing of the metals, including steels, gained a new dimension with the appearance of fem...
Laser texturing can be used for surface modification of metallic alloys in order to improve their pr...
In this work the effect of femtosecond Yb fiber laser irradiation on Ti6Al4V titanium alloy is asses...
In this study, we present a femtosecond laser patterning method based on the control of surface refl...
The response of titanium surface irradiated with high intensity (10(13) - 10(15) W/cm(2)) Ti:sapphir...
International audienceTopographic and wetting properties of AISI 316L stainless steel and Ti-6Al-V a...
Femtosecond lasers are ultra short pulse lasers that have become highly important in the modern worl...
Femtosecond laser surface modification has been proved to be a versatile technology to create variou...
The machining of micro/nano periodic surface structures using a femtosecond laser has been an academ...
Femtosecond laser micromachining has emerged in recent years as a new technique for micro/nano struc...
The work is devoted to the problem of microand nanostructuring of the surface of solids as a result ...
The effect of an infrared pulse laser with femtosecond radiation (λ = 744 nm, τ ≈ 120 fs, E ≤ 8 mJ) ...
Controlling laser induced surface morphology is essential for developing specialized functional surf...
yesColor marking of rough or smooth metal (Al, Cu, Ti) and semiconductor (Si) surfaces was realized ...
Controlling laser induced surface morphology is essential for developing specialized functional surf...
Surface texturing of the metals, including steels, gained a new dimension with the appearance of fem...
Laser texturing can be used for surface modification of metallic alloys in order to improve their pr...
In this work the effect of femtosecond Yb fiber laser irradiation on Ti6Al4V titanium alloy is asses...
In this study, we present a femtosecond laser patterning method based on the control of surface refl...
The response of titanium surface irradiated with high intensity (10(13) - 10(15) W/cm(2)) Ti:sapphir...
International audienceTopographic and wetting properties of AISI 316L stainless steel and Ti-6Al-V a...
Femtosecond lasers are ultra short pulse lasers that have become highly important in the modern worl...
Femtosecond laser surface modification has been proved to be a versatile technology to create variou...
The machining of micro/nano periodic surface structures using a femtosecond laser has been an academ...
Femtosecond laser micromachining has emerged in recent years as a new technique for micro/nano struc...
The work is devoted to the problem of microand nanostructuring of the surface of solids as a result ...
The effect of an infrared pulse laser with femtosecond radiation (λ = 744 nm, τ ≈ 120 fs, E ≤ 8 mJ) ...
Controlling laser induced surface morphology is essential for developing specialized functional surf...
yesColor marking of rough or smooth metal (Al, Cu, Ti) and semiconductor (Si) surfaces was realized ...
Controlling laser induced surface morphology is essential for developing specialized functional surf...