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Defect detection of wall paintings in the Chateau de Versailles using TV-holography and IR thermography

机译:使用电视全息和IR热成像,缺陷De Versailles墙面涂料的缺陷检测

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Monuments are continuously submitted to external events like water infiltration or condensation, temperature variation, soil instability, that lead to internal damage of the structure itself as well as of its surfaces. Wall paintings are then submitted to stresses that may cause cracks, internal de-lamination of the plaster or de-bonding between canvas and plaster. In the frame of the restoration of the "galerie des glaces" in the "chateau de Versailles", TV-Holography and IR Thermography have been used to investigate the wall paintings of the vault. The surfaces to control were either direct paintings on the plaster or paintings on canvas backed on the plaster. IR Thermography for art work and in particular for wall paintings has only recently been used. The technique allows to record transient temperature maps, when slightly heating the surface during a short time. Then, nonhomogeneities in the conductive heat transfer are related to de-bonding or de-lamination. The time parameter gives information on the depth of the defect. A calibration procedure has to be carried out to ensure reliable defect detection. Speckle interferometry is a Non Destructive Testing technique that is currently used in industry. For the wall paintings, we have used TV-Holography associated with a continuous wave laser. The technique allows, 13 metres away from the surface, to detect parts of the paintings that were vibrating due to an acoustic excitation. The control processes based on these two technologies is detailed as well as the results obtained and a comparison with manual investigation is done.
机译:纪念碑不断提交给水渗透或冷凝,温度变化,土壤不稳定等外部事件,这导致结构本身的内部损坏以及其表面。然后将壁画提交给可能导致裂缝,内部脱涂层的裂缝或在帆布和石膏之间的脱粘的压力。在“Chateau de Versailles”中的“Galerie des Gloobes”恢复框架中,电视全息和IR热成像已被用于研究拱顶的壁画。控制的表面是直接绘画在石膏上的石膏或绘画上的绘画。最近使用艺术品的IR热成像,特别是墙面涂料。该技术允许在短时间内轻微加热表面时记录瞬态温度图。然后,导电传热中的非均匀性与去粘合或去层压有关。时间参数提供有关缺陷深度的信息。必须进行校准程序以确保可靠的缺陷检测。散斑干涉测量是目前在工业中使用的非破坏性测试技术。对于墙面绘画,我们使用与连续波激光相关的电视全息术。该技术允许距离表面13米,检测由于声激发而振动的绘画部分。基于这两种技术的控制过程详述,并且完成了所获得的结果和与手动调查的比较。

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