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复合材料电磁无损检测

托马斯·沙迪, 普热·洛帕托

托马斯·沙迪, 普热·洛帕托. 复合材料电磁无损检测[J]. 无损检测, 2009, 31(10): 758-761.
引用本文: 托马斯·沙迪, 普热·洛帕托. 复合材料电磁无损检测[J]. 无损检测, 2009, 31(10): 758-761.
Tomasz Chady, Przemyslaw Lopato. Electromagnetic Nondestructive Testing of Composite Materials[J]. Nondestructive Testing, 2009, 31(10): 758-761.
Citation: Tomasz Chady, Przemyslaw Lopato. Electromagnetic Nondestructive Testing of Composite Materials[J]. Nondestructive Testing, 2009, 31(10): 758-761.

复合材料电磁无损检测

详细信息
  • 中图分类号: TG115.28

Electromagnetic Nondestructive Testing of Composite Materials

  • 摘要: 各种复合材料广泛地使用于现代工业生产中。由于复合材料的复杂性, 常规无损检测技术往往不再适用。对基于亚毫米波技术的复合材料检测技术作介绍。给出了有限元模型, 并提出了基于简单信号处理算法的重构技术。
    Abstract: Today modern industry make very extensive use of various composite materials. Because of complexity of such structures, abilities of commonly used NDT methods sometimes are not sufficient. More advanced techniques should be utilized. In this paper T-Ray (terahertz radiation) method is presented for the purposes of various composite materials evaluation. Finite Element Method modeling of terahertz evaluation is shown and reconstruction procedure based on basic signal processing algorithms was proposed.
  • [1] Summerscales J. Non-destructive Testing of Fibre-Reinforced Plastic Composites[M]. New York: Elsevier Applied Science,1990.
    [2] Mittelman D M, Gupta M, Neelamani R, et al. Recent advances in terahertz imaging[J]. Applied Physics B,1999,68(6):1085-1094.
    [3] Gregory I S, Baker C, Tribe W R, et al. Optimization of Photomixers and Antennas for Continous-Wave Terahertz Emission[J]. IEEE Journal of Quantum Electronics,2005,41(5):717-728.
    [4] Zimdars D, Valdmanis J A, White J S, et al. Technology and applications of terahertz imaging non-destructive examination: Inspection of space shuttle sprayed on foam insulation[J]. Review of Quantitative Nondestructive Evaluation,2005(760):570-577.
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出版历程
  • 刊出日期:  2009-10-09

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