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Optimisation and on-line acoustic monitoring of laser cleaning of soiled paper

Applied Physics A: Materials Science and Processing, ISSN: 0947-8396, Vol: 81, Issue: 5, Page: 943-951
2005
  • 27
    Citations
  • 0
    Usage
  • 30
    Captures
  • 0
    Mentions
  • 0
    Social Media
Metric Options:   Counts1 Year3 Year

Metrics Details

  • Citations
    27
    • Citation Indexes
      27
  • Captures
    30

Article Description

Laser cleaning is an attractive and advanced technique of cleaning cultural heritage materials. However, in the case of paper-based substrates, it may lead to surface discoloration and long-term destabilisation of the cellulosic component. The origin of discoloration during pulsed laser removal (Nd:YAG laser, 532 and 1064 nm) of carbonaceous soiling was studied using UV resonance Raman spectroscopy and X-ray photoelectron spectroscopy. It was concluded that macromolecular conjugated systems are the most probable cause of discoloration, formed as a consequence of thermolytic reactions. With chemiluminometry, we analysed the processes following irradiation. Using photo-ageing and thermally accelerated ageing, it was indicated that, even at fluences lower than the ablation threshold of cellulose, long-term destabilisation of the material should be taken into account. By using much lower laser shot repetition rates than usual, i.e. 1 s, we can allow the substrate to cool between consecutive laser shots, thus minimising the adverse effects of laser treatment. Acoustic monitoring was shown to be an affordable possibility for on-line process control. The amplitude of shock waves was shown not to be wavelength dependent (532 or 1064 nm); however, the parameter can be used to monitor the progress of cleaning. © Springer-Verlag 2005.

Bibliographic Details

M. Strlič; V. S. Šelih; D. Kočar; B. Pihlar; J. Kolar; R. Ostrowski; J. Marczak; M. Strzelec; M. Marinček; T. Vuorinen; L. S. Johansson

Springer Science and Business Media LLC

Chemistry; Materials Science

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