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Comparison of induced thermal change to climate chamber simulated environmental change in mosaic model by Digital Holographic Speckle Pattern Interferometry (DHSPI)

机译:诱导热变化对气候室的热变化模拟马赛克模型的环境变化通过数字全息散斑图案干涉测量(DHSPI)

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Ancient wall mosaic decorations can be exposed to uncontrolled environmental conditions. The main mosaic conservationproblems, induced by external factors, are related to temperature and humidity variations, which may result in moisture,salt crystallization and accelerated material deterioration within the underlying layers. Though such deterioration in thesubsurface is not immediately visible, it can strongly affect the preservation of the entire structure and the decoration layerin the short or long-term future.In this paper, we present and discuss laboratory experimental results of Digital Holographic Speckle Pattern Interferometry(DHSPI), applied to the subsurface diagnostic of a mosaic model after artificially induced thermal change and undersimulated environmental conditions in climate chamber. The tests were performed on a custom-built wall mosaic modelwith known construction and known defects, which are simulating voids, detachments and deteriorated, restored orreshuffled areas. Two types of induced stress were used: 1) low thermal excitation emitted by IR lamps directly to thesurface; 2) simulated environmental conditions inside the climate chamber. In regards of the in-situ diagnostic investigationany structural alteration occurs as a natural reaction to the surrounding environment and monitoring of surface reactionsand defect detection under natural fluctuations it could be considered as a very important aspect of implementation tooptimize range of applicability for non-destructive remote portable instrumentation.The obtained DHSPI results on the detection of known defects in the mosaic under artificially induced thermal alterationand under simulated environmental conditions are compared and discussed.
机译:古壁式马赛克装饰品可以暴露在不受控制的环境条件下。主要的马赛克保护由外部因素引起的问题与温度和湿度变化有关,可能导致水分,盐结晶和加速材料在下层内的劣化物质劣化。虽然这种恶化了地下没有立即可见,它可以强烈影响整个结构和装饰层的保存在短期或长期未来。在本文中,我们展示并讨论了数字全息斑点模式干涉测量的实验室实验结果(DHSPI),在人工诱导的热变化之后应用于马赛克模型的地下诊断气候室中的模拟环境条件。测试是在定制的墙壁马赛克模型上进行的具有已知的构造和已知缺陷,其正在模拟空隙,脱离和恶化,恢复或重新洗脱地区。使用两种类型的诱导应力:1)IR灯直接发射的低热激发表面; 2)气候室内的模拟环境条件。关于原位诊断调查任何结构改变都会作为对周围环境的自然反应以及对表面反应的监测和自然波动下的缺陷检测可以被视为实现的一个非常重要的方面优化非破坏性远程便携式仪器适用性范围。所获得的DHSPI导致在人工诱导的热改变下检测马赛克中的已知缺陷并在模拟环境条件下进行比较和讨论。

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