首页> 外文会议>Symposium on Quantitative Nondestructive Evaluation >Influence of Magnetostrictive Strip Size in the Generation of L(0,2) and T(0,1) Wave Mode using Magnetostrictive Patch Transducer (MPT)
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Influence of Magnetostrictive Strip Size in the Generation of L(0,2) and T(0,1) Wave Mode using Magnetostrictive Patch Transducer (MPT)

机译:磁致伸缩条尺寸在使用磁致伸缩贴片换能器(MPT)的L(0,2)和T(0.1)波模式的产生中的影响

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摘要

Magnetostrictive patch transducer (MPT) is widely used to generate ultrasonic guided waves in non-ferromagnetic materials. MPT majorly consist a solenoid, biasing magnet and magnetostrictive strip material. The objective is to investigate the influence of magnetostrictive strip size in the generation of L(0,2) and T(0,1) wave mode at a low-frequency regime using finite element and experimental study. To understand the physics of wave characteristics, a 3-D finite element model was developed. For simulating the effect of magnetostrictive strip size, a displacement field was applied in an area (transduction region) whose dimension is equal to the strip size. The effect was analysed by varying the length and width of the transduction region. For experimental study, a 3.6-meter 3-inch aluminium pipe with a notch defect is used, and the size of the strip varied along the axial and circumferential direction of the pipe. The effect of strip size in the acquired signal is characterized based on the signal strength, SNR and the wave modes generated. This study leads to the efficient optimization of magnetostrictive patch transducer in the generation of L(0,2) and T(0,1) wave modes for long-range inspection.
机译:磁致伸缩片换能器(MPT)被广泛地用于产生在非铁磁材料超声导波。 MPT majorly由一个螺线管,偏置磁铁和磁致伸缩条带材料。的目的是探讨磁致伸缩条带尺寸的L(0,2)和T(0,1)波模式的产生在利用有限元和实验研究低频制度的影响。要理解的波特性的物理,3- d有限元模型。为了模拟磁致伸缩条带尺寸的效果,位移字段中的区域(转导区),其尺寸等于条带大小施用。的影响通过改变转导区域的长度和宽度进行分析。对于实验研究,3.6米3英寸的铝管具有凹口缺陷被使用,并且所述条带的大小沿轴向与管的周向方向变化。基于信号强度,信噪比和所生成的波模的条带大小的所获取的信号的影响,其特征在于。该研究导致磁致伸缩片换能器的L(0,2)和T(0,1)的生成有效的优化波远距离检查模式。

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