C Chillé
Biographic Data
| ID | 676315 |
|---|---|
| NAME | C Chillé |
| GIVEN NAMES | C |
| FAMILY NAME | Chillé |
| SIGNATURE | CHILLÉ C |
| AFFILIATIONS | Nello Carrara Institute of Applied Physics |
| ORCID | 0000-0003-1527-2124 |
| VERIFIED | Yes |
| TOTAL WORKS | 3 |
| TOTAL CITATIONS | 1 |
| AUTHOR COUNT | 3 |
| EDITOR COUNT | 0 |
| FIRST PUBLICATION YEAR | 2023 |
| LATEST PUBLICATION YEAR | 2024 |
| H-INDEX | 1 |
A study on the laser-induced phenomena of commercial dammar, ketone-based and poly(isobutyl methacrylate) resin artists’ varnishes upon Er: YAG laser irradiation
Quantitative spectroscopic characterization of laser-induced effects on oil paint films using 213, 266, or 2940 nm
Removal of aged varnish layers from easel paintings is a challenging task requiring methodologies capable of preventing any alteration of the underlying painted surface. Laser-ablation approaches using the fourth and fifth harmonics of a Q-Switched Nd:YAG (266 and 213 nm, 15 ns) and Free-Running Er:YAG laser (2940 nm, 160 μs pulses) can allow for very thin removal rates but their discrimination of the underlying paint film and self-termination po…
Laser cleaning of artificially soiled cotton fabric: Assessment of surface chemical effects
The effectiveness of the cleaning methods to remove soiling and stains from fabric artefacts is often limited by their complex microscopic and macroscopic structures, including fibre bundles, warp, weft, narrow folds, sewing deformations, and others. These structures may sometimes make the complete fabric cleaning very challenging, and they can easily be damaged. To approach such a problem, the potential of pulsed laser treatments of artificially…
Quantitative spectroscopic characterization of laser-induced effects on oil paint films using 213, 266, or 2940 nm
Removal of aged varnish layers from easel paintings is a challenging task requiring methodologies capable of preventing any alteration of the underlying painted surface. Laser-ablation approaches using the fourth and fifth harmonics of a Q-Switched Nd:YAG (266 and 213 nm, 15 ns) and Free-Running Er:YAG laser (2940 nm, 160 μs pulses) can allow for very thin removal rates but their discrimination of the underlying paint film and self-termination po…
Quantitative spectroscopic characterization of laser-induced effects on oil paint films using 213, 266, or 2940 nm
Removal of aged varnish layers from easel paintings is a challenging task requiring methodologies capable of preventing any alteration of the underlying painted surface. Laser-ablation approaches using the fourth and fifth harmonics of a Q-Switched Nd:YAG (266 and 213 nm, 15 ns) and Free-Running Er:YAG laser (2940 nm, 160 μs pulses) can allow for very thin removal rates but their discrimination of the underlying paint film and self-termination po…
Laser cleaning of artificially soiled cotton fabric: Assessment of surface chemical effects
The effectiveness of the cleaning methods to remove soiling and stains from fabric artefacts is often limited by their complex microscopic and macroscopic structures, including fibre bundles, warp, weft, narrow folds, sewing deformations, and others. These structures may sometimes make the complete fabric cleaning very challenging, and they can easily be damaged. To approach such a problem, the potential of pulsed laser treatments of artificially…
A study on the laser-induced phenomena of commercial dammar, ketone-based and poly(isobutyl methacrylate) resin artists’ varnishes upon Er: YAG laser irradiation
Chemistry (3 works) · Composite material (3 works) · Laser (3 works) · Materials Science (3 works) · Optics (3 works) · Cultural Heritage Materials Analysis (2 works) · Irradiation (2 works) · Laser Material Processing Techniques (2 works) · Laser-induced breakdown spectroscopy (2 works) · Raman spectroscopy (2 works)