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EFFECT OF FLUENCE ON THE DISCOLORATION OF MARBLE CLEANED WITH UV LASERS

机译:用UV激光器流量对大理石变色的影响

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The effect of fluence level on the discoloration of marble surfaces after the removal of the encrustation by 355 nm laser pulses is comparatively studied. Considering the thermochemical reaction possibly occurring in the encrustation during laser irradiation, the mechanism responsible for the discoloration of the cleaned marble surface is analyzed. The reduction of iron oxides by graphite plays a key role in determining the final color of the cleaned marble surface. A two-dimensional laser ablative cleaning model including the reaction heat is applied to calculate the temperature distribution during laser heating. The kinetics of the thermochemical reaction is estimated based on the simulated temperature field. The occurrence of the thermochemical reaction is also verified indirectly with experiments. The marble surfaces before and after laser irradiation are characterized in term of the chemical components through surface enhanced Raman spectroscopy. The surface color is measured with a chromameter using a 1976 CIE Lab color system. The proposed mechanism is also applied to numerically analyze the severer discoloration of marble cleaned with laser pulses at 1064 nm.
机译:较浅的研究比较效果在去除355nm激光脉冲后,流动水平对大理石表面变色的影响。考虑激光照射期间在结壳中可能发生的热化学反应,分析了负责清洁的大理石表面变色的机制。石墨的氧化铁的还原在确定清洁大理石表面的最终颜色时起着关键作用。施加包括反应热的二维激光烧蚀清洁模型以计算激光加热期间的温度分布。基于模拟温度场估计了热化学反应的动力学。还与实验间接核实热化学反应的发生。激光照射前后的大理石表面在化学成分中通过表面增强的拉曼光谱表征。使用1976 CIE LAB彩色系统用色谱计测量表面颜色。该提出的机制也应用于数值分析了在1064nm处用激光脉冲清洁的大理石的严重变色。

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