...
首页> 外文期刊>AIP Advances >Guided wave phased array sensor based on a Galfenol flake-epoxy composite patch with unique circular comb pattern
【24h】

Guided wave phased array sensor based on a Galfenol flake-epoxy composite patch with unique circular comb pattern

机译:基于具有独特圆形梳状图案的Galfenol片状环氧树脂复合贴片的导波相控阵传感器

获取原文
           

摘要

This paper investigates a study of the use of a Fe-Ga alloy (Galfenol) flake-epoxy composite patch with a circular comb shape for Magnetostrictive Phased Array Sensors (MPAS) used for Structural Health Monitoring (SHM) applications based on the ultrasonic Guided Wave (GW) inspection technique. Galfenol materials have demonstrated a variety of beneficial properties for transducer developments such as high magneto-mechanical coupling, low hysteresis loss, moderate magnetostriction and saturation magnetization, and steel-like manufacturability. However, typical Galfenol materials exhibit anisotropic magnetostrictive characteristics that are disadvantageous for a wide range of applications to the GW SHM, especially phased array technology. To overcome the limitation of the Galfenol materials for the service of the GW phased array approach, we developed the Galfenol composite patch based on the circular comb pattern to improve the directional GW sensing performance using the shape anisotropic effect of the magnetostrictive material. The GW MPAS used in this work consists of a magnetostrictive composite patch directly bonded to a waveguide structure and a non-contact and azimuthally rotatable Hexagonal Magnetic Circuit Device (HMCD) including a biasing magnet and six sensing coils with predetermined directional sensing preferences. Although the GW signals obtained from the MPAS using the Galfenol composite patch were weak, the experimental results validated that the proposed MPAS was capable of detecting GWs using the flake-epoxy composite material and exhibited the obvious directional sensing characteristics. There are only six sensing coils in the HMCD, but the MPAS can acquire additional GW signal data in the Galfenol composite patch by simply altering the rotational orientation of the HMCD, leading to effective array imaging results by suppressing unwanted shadow images induced by the side lobe effect of the directional wavenumber filtering method.
机译:本文研究了基于超声导波的,具有圆梳形状的Fe-Ga合金(Galfenol)片状环氧复合贴片用于磁致伸缩相控阵传感器(MPAS)的应用,该传感器用于结构健康监测(SHM) (GW)检查技术。 Galfenol材料对于换能器的开发已显示出多种有益的特性,例如高磁机械耦合,低磁滞损耗,适度的磁致伸缩和饱和磁化强度以及类钢的可制造性。但是,典型的Galfenol材料表现出各向异性的磁致伸缩特性,这对GW SHM的广泛应用不利,尤其是相控阵技术。为克服Galfenol材料用于GW相控阵方法的局限性,我们开发了基于圆形梳状图案的Galfenol复合贴片,以利用磁致伸缩材料的形状各向异性效应改善定向GW感测性能。这项工作中使用的GW MPAS由直接连接到波导结构的磁致伸缩复合材料贴片和非接触且可沿方位角旋转的六边形磁路器件(HMCD)组成,该器件包括偏置磁体和六个具有预定方向感测首选项的感测线圈。尽管使用Galfenol复合贴片从MPAS获得的GW信号较弱,但实验结果证实了所提出的MPAS能够使用片状环氧复合材料检测GW,并表现出明显的方向感应特性。 HMCD中只有六个感应线圈,但是MPAS可以通过简单地改变HMCD的旋转方向来获取Galfenol复合斑块中的其他GW信号数据,从而通过抑制旁瓣引起的不需要的阴影图像来获得有效的阵列成像结果方向波数滤波方法的效果

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号