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Study on the Laser Decontamination of Metal Surface at 1064 and 532 nm

机译:1064和532 nm激光对金属表面的去污研究

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摘要

Type 304 stainless steel is contaminated with CsNO3, Co(NH4)2(SO4)2, CeO2 and Eu2O3. We present the experimental results on decontamination of contaminants attached to type 304 stainless steel surface by coherent light of 1064 nm wavelength and its second harmonic generation occurring at 532 nm derived from a Q-switched Nd: YAG laser. The surface morphology and the relative atomic molar per cent of the specimen surface have been investigated by SEM and EPMA. The decontamination behaviour has been investigated for the variables such as a number of laser shots and fluence. The decontamination behaviour at 532 nm by varying the irradiation angle has also been investigated. The optimum laser fluence at 1064 nm wavelength is found to be 57.3 J/cm~2 and 97.7 % of Cs~+ ion is removed during 40 laser shots. The optimum application condition at 532 nm wavelength is found to be 13.3 J/cm~2 and 30°, respectively. The order of decontamination efficiency at 1064 nm is CsNO3 > Co(NH4)2(SO4)2 > CeO2 > Eu2O3 and at 532 nm is CsNO3 > Co(NH4MSO4)2 > Eu2O3 > CeO2.
机译:304型不锈钢被CsNO3,Co(NH4)2(SO4)2,CeO2和Eu2O3污染。我们介绍了通过1064 nm波长的相干光对附着在304型不锈钢表面上的污染物进行去污的实验结果,以及从Q开关Nd:YAG激光器产生的其在532 nm处产生的二次谐波。用SEM和EPMA研究了样品表面的表面形态和相对原子摩尔百分数。已经研究了去污行为的变量,例如激光束的数量和通量。还研究了通过改变照射角度在532 nm处的去污行为。发现在1064 nm波长处的最佳激光通量为57.3 J / cm〜2,在40次激光发射过程中去除了97.7%的Cs〜+离子。发现在532 nm波长处的最佳应用条件分别为13.3 J / cm〜2和30°。在1064 nm处的去污效率顺序为CsNO3> Co(NH4)2(SO4)2> CeO2> Eu2O3,在532 nm处的去污效率为CsNO3> Co(NH4MSO4)2> Eu2O3> CeO2。

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