• Infrared and Laser Engineering
  • Vol. 44, Issue 1, 96 (2015)
Zhao Xiaoxia1、*, Luo Wenfeng2, Wang Hongying1, Yang Senlin1, Zhu Haiyan2, Li Shuli1, Fu Fuxing1, and Li Yuanyuan1
Author Affiliations
  • 1[in Chinese]
  • 2[in Chinese]
  • show less
    DOI: Cite this Article
    Zhao Xiaoxia, Luo Wenfeng, Wang Hongying, Yang Senlin, Zhu Haiyan, Li Shuli, Fu Fuxing, Li Yuanyuan. Quantitative analysis of the element iron in aluminum alloy using LIBS[J]. Infrared and Laser Engineering, 2015, 44(1): 96 Copy Citation Text show less
    References

    [1] Luo W F, Sun Q B, Gao C X, et al. Plasma properties of 532 nm laser-ablated aluminum E414d target with direrent power densities[J]. Plasma Science and Technology, 2010, 12(4): 385-390.

    [2] Cremers D A, Radziemski L J. Handbook of Laser-Induced Breakdown Spectroscopy[M]. Chichester: John Wiley & Sons, 2006: 156-159.

    [3] Singh J P, Thakur S N. Laser-Induced Breakdown Spectroscopy [M]. Amsterdam: Elsevier, 2006, 205-209.

    [4] Noll R, Bette H, Brysch A, et al. Laser-induced breakdown spectrometry-applications for production control and quality assurance in the steel industry[J]. Sturm V Spectrochim Acta B, 2001, 56(6): 637-640.

    [5] Ma Demin, Ma Yanhua, Shu Rong, et al. Analysis of LIBS feasibility for in-situ dection of lunar soil components[J]. Infrared and Laser Engineering, 2007, 36(5): 656-658. (in Chinese)

    [6] Lv Gang, Qi Hongxing, Pan Mingzhong, et al. Study on the laser induced breakdown spectroscopy overcoming the interfere from atmosphere[J]. Infrared and Laser Engineering, 2010, 40(4): 354-357. (in Chinese).

    [7] Sabsabi M, Cielo P. Quantitative analysis of aluminum alloys by laser-induced breakdown spectroscopy and plasma characterization[J]. Appl Spectrosc, 1995, 49(4): 499-507.

    [8] NIST Atomic Spectra Database Version: Atomic Spectroscopy [EB/OL]. http://www.nist.gov/pml/data/asd.cfm

    [9] Rai S, Rai A K, Thakur S N. Identification of nitro-compounds with LIBS [J]. Appl Phys B, 2008, 91(3): 645-650.

    [10] Aydin U, Roth P, Gehlen C D, et al. Spectral line selection for time-resolved investigations of laser-induced plasmas by an iterative Boltzmann plot method[J]. Spectrochim Acta Part B, 2008, 63(10): 1060-1065.

    [11] Barthelemy O, Margot J, Chaker M, et al. Influence of the laser parameters on the space and time characteristics of an aluminum laser-induced plasma[J]. Spectrochim Acta Part B, 2005, 60(7): 905-914.

    [12] Gehlen C D, Roth P, Aydin U, et al. Time-resolved investigations of laser-induced plasmas generated by nanosecond bursts in the millijoule burst energy regime[J].Spectrochim Acta Part B, 2008, 63(10): 1072-1076.

    [13] Abdellatif G, Imam H. Measurement of nutrients in green house soil with laser induced breakdown spectroscopy[J]. Spectrochim Acta Part B, 2002, 57(1): 1155-1165.

    [14] Lu Zhigang, Zhan Renjun, Wang Xiaoyu, Characteristics of laser-induced plasma acoustic signal[J]. Infrared and Laser Engineering, 2014, 43(9): 2844-2849. (in Chinese)

    [15] Long G L, Winefordner J D. Limit of detection a closer look at the IUPAC definition[J]. Anal Chem, 1983, 55(7):712-724.

    CLP Journals

    [1] Zheng Zhong, Lv Yao, Li Wencheng. High-resolution LIBS system based on far-field optics[J]. Infrared and Laser Engineering, 2017, 46(10): 1006003

    Zhao Xiaoxia, Luo Wenfeng, Wang Hongying, Yang Senlin, Zhu Haiyan, Li Shuli, Fu Fuxing, Li Yuanyuan. Quantitative analysis of the element iron in aluminum alloy using LIBS[J]. Infrared and Laser Engineering, 2015, 44(1): 96
    Download Citation