Interaction of a TEA CO2 laser with a titanium implant in vacuum (air pressure 0.1 mbar) was studied. The laser operates at 10: 6 mu m with pulse duration of 100 ns (FWHM). The surface alternations were studied at the moderate laser beam energy density/fluence of 52 J/cm(2). The energy absorbed from the TEA CO2 laser beam was partially converted to thermal energy, which generated a series of effects such as melting, vaporization of the molten material, shock waves, etc. The following titanium implant surface changes and phenomena were observed: (1) creation of superficial damage which takes crater-shaped form at a higher number of accumulated laser pulses. Maximal depth of the damage was 9 mu m for 500 laser pulses. The damage cross-section...
The purpose of the present in vitro investigation was to measure temperature changes at the implant ...
Surface modification of titanium based implant Ti6Al4V induced by an Nd:YAG laser operating at a wav...
Surface modification of titanium based implant Ti6Al4V induced by an Nd:YAG laser operating at a wav...
Interaction of a TEA CO2 laser with a titanium implant in vacuum (air pressure 0.1 mbar) was studied...
Interaction of a TEA CO2 laser, operating at 10.6 mu m wavelength and pulse duration of 100 ns (FWHM...
Interaction of a TEA CO2laser, operating at 10.6 μm wavelength and pulse length of 100 ns, with ...
Surface changes created by interaction of transversely excited atmospheric carbon dioxide (TEA CO2) ...
Surface changes created by interaction of transversely excited atmospheric carbon dioxide (TEA CO2) ...
Interaction of an Nd:YAG laser, operating at 1064 or 532 nm wavelength and pulse duration of 40 ps, ...
Interaction of an Nd:YAG laser, operating at 1064 or 532 nm wavelength and pulse duration of 40 ps, ...
A study of the surface modification of titanium CP grade 2 implant/target with high intensity picose...
A study of the surface modification of titanium CP grade 2 implant/target with high intensity picose...
Interaction of an Nd:YAG laser, operating at 1064 or 532 run, 40 ps pulse, with Ti6Al4V implant/allo...
Interaction of an Nd:YAG laser, operating at 1064 or 532 run, 40 ps pulse, with Ti6Al4V implant/allo...
Abstract. Interaction of an Nd:YAG laser, operating at 1064 or 532 nm, 40 ps pulse, with Ti6Al4V imp...
The purpose of the present in vitro investigation was to measure temperature changes at the implant ...
Surface modification of titanium based implant Ti6Al4V induced by an Nd:YAG laser operating at a wav...
Surface modification of titanium based implant Ti6Al4V induced by an Nd:YAG laser operating at a wav...
Interaction of a TEA CO2 laser with a titanium implant in vacuum (air pressure 0.1 mbar) was studied...
Interaction of a TEA CO2 laser, operating at 10.6 mu m wavelength and pulse duration of 100 ns (FWHM...
Interaction of a TEA CO2laser, operating at 10.6 μm wavelength and pulse length of 100 ns, with ...
Surface changes created by interaction of transversely excited atmospheric carbon dioxide (TEA CO2) ...
Surface changes created by interaction of transversely excited atmospheric carbon dioxide (TEA CO2) ...
Interaction of an Nd:YAG laser, operating at 1064 or 532 nm wavelength and pulse duration of 40 ps, ...
Interaction of an Nd:YAG laser, operating at 1064 or 532 nm wavelength and pulse duration of 40 ps, ...
A study of the surface modification of titanium CP grade 2 implant/target with high intensity picose...
A study of the surface modification of titanium CP grade 2 implant/target with high intensity picose...
Interaction of an Nd:YAG laser, operating at 1064 or 532 run, 40 ps pulse, with Ti6Al4V implant/allo...
Interaction of an Nd:YAG laser, operating at 1064 or 532 run, 40 ps pulse, with Ti6Al4V implant/allo...
Abstract. Interaction of an Nd:YAG laser, operating at 1064 or 532 nm, 40 ps pulse, with Ti6Al4V imp...
The purpose of the present in vitro investigation was to measure temperature changes at the implant ...
Surface modification of titanium based implant Ti6Al4V induced by an Nd:YAG laser operating at a wav...
Surface modification of titanium based implant Ti6Al4V induced by an Nd:YAG laser operating at a wav...