• CN:11-2187/TH
  • ISSN:0577-6686

›› 2006, Vol. 42 ›› Issue (3): 171-178.

• 论文 • 上一篇    下一篇

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充水管道中纵向超声导波传播特性的理论分析与试验研究

刘增华;何存富;杨士明;王秀彦;吴斌   

  1. 北京工业大学机械工程与应用电子技术学院
  • 发布日期:2006-03-15

THEORETICAL AND EXPERIMENTAL STUDIES OF LONGITUDINAL ULTRASONIC GUIDED WAVE PROPAGATION CHARACTERISTICS IN WATER-FILLED PIPES

LIU Zenghua;HE Cunfu;YANG Shiming;WANG Xiuyan;WU Bin   

  1. College of Mechanical Engineering & Applied Electronics Technology, Beijing University of Technology
  • Published:2006-03-15

摘要: 从理论上得到了充非粘性液体管道中纵向超声导波的频散方程。分析了纵向模态在充水钢管和带刚性边界的水圆柱体中传播特性。除α模态,充水钢管中的其他模态均是钢管和带刚性边界的水圆柱体中各模态相互耦合的结果。对于充水钢管中同一模态,在不同频率范围,传播特性差别也较大。在充水和未充水的钢管中进行了激励和接收纵向模态的试验研究。结果表明,在充水钢管中具有模态分支、群速度降低等传播特性。当充水钢管中纵向模态的频带处于钢管中未受干扰的L(0, 2)模态分支部分时,能长距离传播,由于频散较小,在传播距离较长时,波形和幅度不会发生明显变化,适合于长距离充水管道的缺陷检测。

关键词: 充液管道, 模态分支, 频散, 液体圆柱体, 纵向模态, BCC点阵, BCT点阵, SLM, 点阵结构, 多孔材料

Abstract: Longitudinal ultrasonic guide wave dispersion equation of inviscid liquid-filled pipe is analyzed theoretically. Propagation characteristics of longitudinal modes in water- filled steel pipe and water cylinder with rigid boundary are studied. Except α mode, other modes in wall-filled steel pipe are the coupling of the modes of steel pipe in vacuum and of water cylinder with rigid boundary. To the same mode in water-filled steel pipe, its propagation characteristics vary greatly with frequency range. Furthermore, longitudinal modes are excited and received in steel pipes filled with and without water experimentally. Results show that propagation character- istics, such as mode branching and group velocity decrease, occur in water-filled steel pipe. When frequency band of longit- udinal mode in water-filled steel pipe is in the range of one unperturbed L(0, 2) mode branching of steel pipe in vacuum, the mode has the ability of long distance propagation, and the signal shape and amplitude are retained as it travels long distances for its low dispersion. As a result, the kind of longitu- dinal mode is suitable to defect detection of long distance water- filled pipe.

Key words: Liquid cylinder Longitudinal mode, Dispersion, Liquid-filled pipe, Mode branching, BCC lattice, BCT lattice, Cellular material, Lattice structure, Selective laser melting

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