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Magnetostrictive Helical Array Transducer for Inspecting Spiral Welded Pipes Using Flexural Guided Waves

机译:用于使用弯曲引导波检查螺旋焊接管的磁致伸缩螺旋阵列换能器

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A wavefront analysis indicates that a flexural wave propagates at a helix angle with respect to the pipe axis. The expression for calculation of the helix angle for each flexural mode is given, and the helix angle dispersion curves for flexural modes are calculated. According to the new understanding of flexural guided waves, a magnetostrictive helical array transducer (MHAT) is proposed for selectively exciting a single predominant flexural torsional guided wave in a pipe and inspecting spiral welded pipes using flexural waves. A MHAT contains a pre-magnetized magnetostrictive patch that is helically coupled with the outer surface of a pipe, and an array of novel compound comb coils that are wrapped around the helical magnetostrictive patch. The proposed wideband MHAT possesses the direction control ability. A verification experiment indicates that flexural torsional mode T(3,l) at center frequency f=64kHz is effectively actuated by a MHAT with 13-degree helix angle. A 20-degree MHAT is adopted to inspect a spiral welded pipe, an artificial notch with cross section loss CSL=2.7% is effectively detected by using flexural waves.
机译:波前分析表明弯曲波相对于管轴以螺旋角传播。给出了用于计算每个弯曲模式的螺旋角的表达,并且计算弯曲模式的螺旋角色散曲线。根据对弯曲引导波的新理解,提出了一种磁致伸缩螺旋阵列换能器(MHAT),用于选择性地激励管道中的单个主要弯曲扭转导向波,并使用弯曲检测螺旋焊接管。 MHAT含有预磁化的磁致伸缩贴片,其与管的外表面螺旋地耦合,以及缠绕在螺旋磁致伸缩贴片周围的新型化合物梳状线圈阵列。所提出的宽带MHAT具有方向控制能力。验证实验表明,中心频率f = 64kHz的弯曲扭转模式T(3,L)通过具有13度螺旋角的MHAT有效地致动。采用20度MHAT检查螺旋焊管,通过使用弯曲波有效地检测横截面损失CSL = 2.7%的人工凹口。

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