In the field of surface treatment, laser colour marking can be used to produce coloured marks on the surfaces of metals. Laser colour markings can be applied to various materials, but on titanium alloys a wide spectra of vivid colours can be achieved. This study presents an analysis of the corrosion properties of laser treated surfaces that were exposed to aggressive environments. Different samples were prepared with laser light of various power intensities and processing speeds. The samples were prepared on low alloyed Ti. Electrochemical, spectroscopic and microstructural analyses were conducted in order to study the properties of the laser treated surfaces. Corrosion testing showed different effects of laser power and production speed on...
Recently, the additive manufacturing techniques (e.g., selective laser melting and electron beam mel...
Titanium alloys are used in biomedical implants, as well as in other applications, due to the excell...
<div><p>In many aerospace applications, it is important to produce hydro-repellent surfaces because ...
In the field of surface treatment, laser colour marking can be used to produce coloured marks on the...
Oxides of titanium exhibit vivid colours that can be generated naturally or manipulated through cont...
Surface engineering is widely used in different areas, such as the aerospace industry or the biomech...
Laser color marking of stainless steel has been in the interests of different industries for some ti...
6th International Conference on Diffusion in Solids and Liquids, DSL-2010, Paris, 5-7 July 2010The t...
Laser induced thermal oxidation for colouring of commercially pure Ti (Grade II) is studied. Laser c...
Laser induced thermal oxidation for colouring of commercially pure Ti (Grade II) is studied. Laser c...
Laser induced thermal oxidation for colouring of commercially pure Ti (Grade II) is studied. Laser c...
Laser induced thermal oxidation for colouring of commercially pure Ti (Grade II) is studied. Laser c...
Laser induced thermal oxidation for colouring of commercially pure Ti (Grade II) is studied. Laser c...
This paper reviews progress over the last five years in the field of laser surface modification of t...
Recently, the additive manufacturing techniques (e.g., selective laser melting and electron beam mel...
Recently, the additive manufacturing techniques (e.g., selective laser melting and electron beam mel...
Titanium alloys are used in biomedical implants, as well as in other applications, due to the excell...
<div><p>In many aerospace applications, it is important to produce hydro-repellent surfaces because ...
In the field of surface treatment, laser colour marking can be used to produce coloured marks on the...
Oxides of titanium exhibit vivid colours that can be generated naturally or manipulated through cont...
Surface engineering is widely used in different areas, such as the aerospace industry or the biomech...
Laser color marking of stainless steel has been in the interests of different industries for some ti...
6th International Conference on Diffusion in Solids and Liquids, DSL-2010, Paris, 5-7 July 2010The t...
Laser induced thermal oxidation for colouring of commercially pure Ti (Grade II) is studied. Laser c...
Laser induced thermal oxidation for colouring of commercially pure Ti (Grade II) is studied. Laser c...
Laser induced thermal oxidation for colouring of commercially pure Ti (Grade II) is studied. Laser c...
Laser induced thermal oxidation for colouring of commercially pure Ti (Grade II) is studied. Laser c...
Laser induced thermal oxidation for colouring of commercially pure Ti (Grade II) is studied. Laser c...
This paper reviews progress over the last five years in the field of laser surface modification of t...
Recently, the additive manufacturing techniques (e.g., selective laser melting and electron beam mel...
Recently, the additive manufacturing techniques (e.g., selective laser melting and electron beam mel...
Titanium alloys are used in biomedical implants, as well as in other applications, due to the excell...
<div><p>In many aerospace applications, it is important to produce hydro-repellent surfaces because ...