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Nonferromagnetic material inserted magnetostrictive patch bonding technique for torsional modal testing of a ferromagnetic cylinder

机译:非铁磁材料插入磁致伸缩贴片粘结技术用于铁磁圆柱体的扭转模态测试

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摘要

Torsional vibration testing requires pure torsional mode transduction. However, no reliable technique is available for exciting torsional vibrations in ferromagnetic cylinders for a relatively wide range of frequencies. A magnetostrictive patch bonding excitation method developed for nonferromagnetic cylinders, based on the magnetostrictive principle, may be considered for ferromagnetic cylinders. However, the direct bonding of a magnetostrictive patch onto a ferromagnetic cylinder fails because the applied magnetic field spreads to both the patch and the cylinder and thus generates unwanted modes of vibration such as longitudinal modes. Thus, a modified or new technique must be developed in order to concentrate the applied magnetic field mainly on the patch, while causing the patch deformation to fully transfer to the cylinder. This paper presents a modified magnetostrictive patch bonding excitation and measurement technique suitable for ferromagnetic cylinders. The key idea is to insert a nonferromagnetic material between the test cylinder and the magnetostrictive patch. Because the thickness of the material or the gap size critically affects the torsional vibration test by the magnetostrictive patch boding method, a series of numerical and experimental investigations to find the optimal gap size are conducted. Other factors affecting the developed modal testing method are also considered. The validity of the developed method is checked by comparing the experimentally obtained eigenfrequencies of a test ferromagnetic cylinder with the theoretical eigenfrequencies. © 2010 American Institute of Physics Article Outline INTRODUCTION ANALYSIS AND EXPERIMENT CONCLUSIONS
机译:扭转振动测试需要纯扭转模式转换。然而,没有可靠的技术可用于在相对宽的频率范围内激发铁磁圆柱体中的扭转振动。基于磁致伸缩原理,针对非铁磁圆柱体开发的磁致伸缩贴片激励方法可以考虑用于铁磁圆柱体。但是,将磁致伸缩贴片直接粘结到铁磁圆柱体上会失败,因为所施加的磁场会扩散到贴片和圆柱体上,从而产生有害的振动模式,例如纵向模式。因此,必须开发一种改进的或新的技术,以便将施加的磁场主要集中在补片上,同时使补片变形完全转移到圆柱体上。本文提出了一种适用于铁磁圆柱体的改进的磁致伸缩膜片粘结激励和测量技术。关键思想是在测试圆柱体和磁致伸缩贴片之间插入非铁磁材料。由于材料的厚度或间隙尺寸会严重影响磁致伸缩贴片粘结方法的扭转振动测试,因此进行了一系列数值和实验研究,以找到最佳间隙尺寸。还考虑了影响已开发的模态测试方法的其他因素。通过将实验获得的铁磁圆柱体的本征频率与理论本征频率进行比较,来检验所开发方法的有效性。 ©2010美国物理研究所文章大纲简介分析和实验结论

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  • 来源
    《Review of Scientific Instruments》 |2010年第3期|p.1-5|共5页
  • 作者

    Chan Il Park; Yoon Young Kim;

  • 作者单位

    Institute of Advanced Machinery and Design and National Creative Research Initiatives Center for Multiscale Design, Seoul National University, Shinlim-Dong, San 56-1, Kwanak-Gu, Seoul 151-742, Republic of Korea;

    School of Mechanical and Aerospace Engineering and National Creative Research Initiatives Center for Multiscale Design, Seoul National University, Shinlim-Dong, San 56-1, Kwanak-Gu, Seoul 151-742, Republic of Korea;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    bonding processes; ferromagnetic materials; magnetostrictive devices; torsion;

    机译:键合工艺;铁磁材料;磁致伸缩器件;扭转;

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