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A 64-kHz Sandwich Transducer Fabricated Using Pseudo 1-3 Magnetostrictive Composite

机译:使用伪1-3磁致伸缩复合材料制造的64 kHz三明治式传感器

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A 64-kHz sandwich transducer employing a tube-shaped Terfenol-D/epoxy pseudo 1-3 magnetostrictive composite with 0.61 Ter-fenol-D volume fraction was developed to alleviate the intrinsic eddy-current losses in magnetostrictive alloy-based transducers. The transducer was designed to operate as a half-wave, longitudinal, mass-spring-mass, linear vibrator. It had a length of 15.7 mm and consisted of a magnetic circuit and a prestress mechanism. The magnetic circuit was composed of the composite tube, a pair of ring-shaped NdFeB permanent magnets, a drive solenoid, and a Ni-based magnetic flux guide. The distributions of the dc magnetic flux lines and magnetic field strength of the transducer were determined using an ANSYS finite-element model. The dynamic performance of the transducer was evaluated by measuring its electrical and vibrational characteristics. The results revealed that the transducer resonates at a frequency of 64.3 kHz with a strain coefficient of 39.2 nm/A, a mechanical quality factor of 39.6, and an effective coupling coefficient of 0.21. Eddy-current losses in the transducer were insignificant in the measured frequency range of 40 Hz-100 kHz. The good transducer performance indicated that Terfenol-D/epoxy pseudo 1-3 composites would be a promising magnetostrictive material for ultrasonic applications.
机译:开发了一种采用管式Terfenol-D /环氧伪1-3磁致伸缩复合材料(体积分数为0.61)的64 kHz三明治换能器,以减轻基于磁致伸缩合金的换能器的固有涡流损耗。该换能器设计为可作为半波,纵向,质量弹簧质量的线性振动器。它的长度为15.7毫米,由磁路和预应力机构组成。磁路由复合管,一对环形NdFeB永磁体,驱动螺线管和Ni基磁通量导管组成。使用ANSYS有限元模型确定直流磁通线的分布和换能器的磁场强度。换能器的动态性能通过测量其电气和振动特性进行评估。结果表明,换能器以64.3 kHz的频率谐振,应变系数为39.2 nm / A,机械品质因数为39.6,有效耦合系数为0.21。在40 Hz-100 kHz的测量频率范围内,换能器中的涡流损耗微不足道。良好的换能器性能表明,Terfenol-D /环氧拟1-3复合材料将是用于超声应用的有希望的磁致伸缩材料。

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