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Practical issues in laser cleaning of stone and painted artefacts: optimisation procedures and side effects

机译:激光清洁石材和油漆制品的实际问题:优化程序和副作用

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摘要

In the last twenty years lasers have acquired an important role in the study and the preservation of Cultural Heritage (CH) objects and Monuments, as they have effectively illuminated a number of complex diagnostic and restoration problems. Their unique properties have enabled their use in a wide range of conservation applications, since they ensure interventions with precise control, material selectivity and immediate feedback. Surface cleaning, based on laser ablation, is a delicate, critical and irreversible process, which, given the multitude of materials that may be present on a CH object and the often fragile or precarious condition of the original surfaces, is fraught with many potential complications. Therefore it is crucial to choose the best possible laser cleaning methodology for each individual case, which involves optimising the laser parameters according to material properties, as well as the thorough knowledge of the ablation mechanisms involved. In this context the systematic investigation and elucidation of potential damage or side effects occurring upon cleaning is essential, as it delineates the possibilities and limitations of laser ablation and allows the fine-tuning of the operating parameters for a successful cleaning intervention. This paper is an overview of studies investigating the mechanisms which are responsible for the laser-induced discoloration effects. Emphasis is given on the yellowing coloration observed on stonework upon infrared (IR) ablation of pollution encrustations, while the various theories introduced to approach the different physical and/or chemical processes and mechanisms responsible for such side effects are discussed. In this respect the different laser cleaning methodologies, which are based on the use of laser systems with different pulse durations and wavelength characteristics, introduced in order to rectify or prevent discoloration on stonework are presented. In parallel, the darkening phenomena which occur upon laser irradiation of painted surfaces are also considered. Studies on series of model paints performed in order to understand the sensitivity of pigments to laser irradiation are critically reviewed. In this respect the importance of the optimal wavelength and pulse-duration selection for a safe and controlled laser cleaning intervention is also addressed.
机译:在过去的20年中,激光在研究和保护文化遗产(CH)物体和古迹方面起了重要作用,因为它们有效地阐明了许多复杂的诊断和修复问题。它们具有独特的性能,可确保其干预具有精确的控制,材料的选择性和即时的反馈,从而使其可用于各种保护用途。基于激光烧蚀的表面清洁是一种微妙,关键且不可逆的过程,考虑到CH对象上可能存在多种材料并且原始表面经常处于脆弱或不稳定的状态,因此该过程充满了许多潜在的并发症。因此,为每种情况选择最佳的激光清洁方法至关重要,这涉及根据材料特性以及所涉及的烧蚀机理的全面知识来优化激光参数。在这种情况下,必须进行系统的研究并阐明清洁时可能发生的潜在损坏或副作用,因为它描述了激光烧蚀的可能性和局限性,并且可以对操作参数进行微调,以成功进行清洁干预。本文概述了研究引起激光引起的变色效应的机理的研究。着重讨论了在红外线腐蚀污染物污染的情况下在石材上观察到的黄变色,同时讨论了引入各种理论以解决造成这种副作用的不同物理和/或化学过程和机理。在这方面,提出了不同的激光清洁方法,这些方法是基于使用具有不同脉冲持续时间和波长特性的激光系统而提出的,以纠正或防止石材上的变色。同时,还考虑了激光照射涂漆表面时发生的变暗现象。为了理解颜料对激光辐射的敏感性而进行的一系列模型涂料的研究受到严格审查。在这方面,还讨论了最佳波长和脉冲持续时间选择对于安全和受控的激光清洁干预的重要性。

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  • 来源
    《Applied Physics》 |2012年第2期|p.447-464|共18页
  • 作者单位

    Institute of Electronic Structure and Laser (IESL), Foundation for Research and Technology-Hellas (FORTH), P.O. Box 1385, 71110 Heraklion, Crete, Greece;

    Instituto de Quimica Ffsica Rocasolano, CSIC, Serrano 119, 28006 Madrid, Spain;

    Instituto de Quimica Ffsica Rocasolano, CSIC, Serrano 119, 28006 Madrid, Spain;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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