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Effects of slits in a patch of omnidirectional Lamb-wave MPT on the transducer output

机译:全向Lambwave MPT补丁中的缝隙对换能器输出的影响

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An omnidirectional Lamb-wave magnetostrictive patch transducer (MPT) uses a thin circular magnetostrictive patch excited by the axisymmetric turns of a plane coil placed over it. Since the dynamic magnetic field applied by the coil induces an eddy current only on the top surface due to the skin effect, the mechanical deformation in the patch is confined only near the surface, considerably limiting the transducer output power. This study shows that if a radial slit is introduced in the patch, the circular flow of the eddy current on the top surface only becomes broken, and thus the eddy current flows on both the top and bottom surfaces. As a consequence, there is a substantial increase in the dynamic magnetic field in the patch and, in turn, an increased transducer output power. Interestingly, the material type, either metallic or nonmetallic, of the test waveguide plate affects the magnitude of the eddy current near the bottom surface and the overall magnetic field. If the number of slits is over a certain number, say, 8, and the slits are symmetrically made in the patch, the omni-directivity of the resulting MPT is virtually ensured. Finally, the present findings are verified both numerically and experimentally.
机译:全向Lamb-wave磁致伸缩贴片换能器(MPT)使用薄的圆形磁致伸缩贴片,该薄的圆形磁致伸缩贴片由放置在其上的平面线圈的轴对称匝激励。由于线圈的动态磁场由于集肤效应而仅在顶表面上感应出涡流,因此贴片中的机械变形仅局限于表面附近,从而大大限制了换能器的输出功率。这项研究表明,如果在贴片中引入径向缝,则涡流在顶表面上的循环流动只会被破坏,因此涡流在顶和底表面上都会流动。结果,贴片中的动态磁场大大增加,进而换能器输出功率增加。有趣的是,测试波导板的金属或非金属材料类型会影响底表面附近的涡电流和整个磁场的强度。如果狭缝的数量超过一定数量,例如8个,并且在贴片中对称地形成狭缝,则实际上确保了所得MPT的全向性。最后,目前的发现在数值和实验上都得到了验证。

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