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亥姆霍兹共振式声电换能系统研究 被引量:3
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作者 马智宇 吕海峰 +1 位作者 叶俊杰 张文辉 《振动与冲击》 EI CSCD 北大核心 2022年第10期231-237,共7页
为了利用环境噪声进行发电,提出了一种基于亥姆霍兹共振效应的声电换能系统。声电换能结构将亥姆霍兹共振效应与压电效应相结合,采用多个亥姆霍兹共鸣器串联共振吸声,驱动压电陶瓷变形发电,通过信号转换与能量收集电路将电能存储。利用C... 为了利用环境噪声进行发电,提出了一种基于亥姆霍兹共振效应的声电换能系统。声电换能结构将亥姆霍兹共振效应与压电效应相结合,采用多个亥姆霍兹共鸣器串联共振吸声,驱动压电陶瓷变形发电,通过信号转换与能量收集电路将电能存储。利用COMSOL软件的声固耦合模块、静电模块研究了声电换能结构的声学性能与电学性能。仿真结果表明,在亥姆霍兹共振频率附近传递损失最高可达10.47 dB,同时系统产生的电能也最大。试验结果表明,当声电换能结构工作于共振频率365 Hz时,产生的电压最大值为20 V,声电换能结构发电功率为3 mW,平均功率密度为13.58μW/cm^(3),能量转化效率为42.01%。该声电换能系统在噪声控制的同时实现了声电能量的转换与储存。 展开更多
关键词 亥姆霍兹共振效应 效应 声电换能 固耦合
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耳蜗植入(电子耳蜗)编年史
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作者 王荣光 王洪田 韩东一 《国外医学(耳鼻咽喉科学分册)》 2001年第6期379-380,共2页
关键词 易听器 耳蜗植入 皮子耳蜗 声电换能装置
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高性能PZT陶瓷双晶片制备及猫中耳拾音实验研究
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作者 康厚墉 吴拥真 +3 位作者 迟放鲁 郭少波 高娜 潘铁政 《无机材料学报》 SCIE EI CAS CSCD 北大核心 2010年第7期691-694,共4页
制备横向压电系数d31高达-480pC/N和居里温度Tc达280℃的高性能PZT压电陶瓷材料,再制成厚0.3mm、宽1.0mm和长度分别为3.5、4.0和4.5mm的压电双晶片(PCBE),结合前置放大器制成声电换能器,将其植入猫耳内并测试PCBE耦合于听骨链上的声学... 制备横向压电系数d31高达-480pC/N和居里温度Tc达280℃的高性能PZT压电陶瓷材料,再制成厚0.3mm、宽1.0mm和长度分别为3.5、4.0和4.5mm的压电双晶片(PCBE),结合前置放大器制成声电换能器,将其植入猫耳内并测试PCBE耦合于听骨链上的声学信号拾取能力.结果表明:制备的PCBE具有良好的声-电换能性能;三种长度的PCBE均可全部植入猫耳鼓室,拾取体外20~20000Hz声信号可获得较平坦的频响曲线,长度为4.5mm的PCBE拾取信号最佳,最大输出达-13.16dB(0dB输入,1.5kHz时).证实PZT压电双晶片可以制成鼓室内全植入式传声器。 展开更多
关键词 陶瓷双晶片 横向压系数 声电换能 中耳
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Mechanism study on electromagnetic acoustic transducer for ultrasonic generation in ferromagnetic material 被引量:1
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作者 雷华明 阙沛文 +1 位作者 张志钢 黄晶 《Journal of Southeast University(English Edition)》 EI CAS 2004年第3期309-314,共6页
Based on the proper assumptions and approximations, the coupling mechanism of the electromagnetic acoustic transducer (EMAT) for ultrasonic generation within ferromagnetic material was studied by analyzing the eddy cu... Based on the proper assumptions and approximations, the coupling mechanism of the electromagnetic acoustic transducer (EMAT) for ultrasonic generation within ferromagnetic material was studied by analyzing the eddy current distribution, Lorentz force, magnetostriction force and magnetization force. Some useful numerical calculations are presented to explain the EMAT behavior with general geometric arrangements. It is indicated that for the ferromagnetic material the magnetostriction effect dominates the EMAT phenomenon for ultrasonic wave generation in low magnetic field intensity, while the material does not reach its magnetizing saturation. But, with the increase of the bias magnetic field and saturation, the magnetostrictive terms will make no contributions to the ultrasonic generation and the Lorentz force becomes the only exciting mechanism. It is important to determine both the Lorentz and magnetostriction forces and select the appropriate working manner for achieving an optimized design. 展开更多
关键词 CALCULATIONS Eddy currents Ferromagnetic materials MAGNETIZATION MAGNETOSTRICTION Ultrasonic waves
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Modeling and finite element analysis of transduction process of electromagnetic acoustic transducers for nonferromagnetic metal material testing 被引量:13
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作者 郝宽胜 黄松岭 +2 位作者 赵伟 段汝娇 王珅 《Journal of Central South University》 SCIE EI CAS 2011年第3期749-754,共6页
Facing the problems lack of considering the non-uniform distribution of the static bias magnetic field and computing the panicle displacements in the simulation model of electromagnetic acoustic transducer (EMAT), a... Facing the problems lack of considering the non-uniform distribution of the static bias magnetic field and computing the panicle displacements in the simulation model of electromagnetic acoustic transducer (EMAT), a multi-field coupled model was established and the finite element method (FEM) was presented to calculate the entire transduction process. The multi-field coupled model included the static magnetic field, pulsed eddy current field and mechanical field. The FEM equations of the three fields were derived by Garlerkin FEM method. Thus, the entire transduction process of the EMAT was calculated through sequentially coupling the three fields. The transduction process of a Lamb wave EMAT was calculated according to the present model and method. The results show that, by the present method, it is valid to calculate the particle displacement under the given excitation signal and non-uniformly distributed static magnetic field. Calculation error will be brought about if the non-uniform distribution of the static bias magnetic field is neglected. 展开更多
关键词 metal material nondestructive testing electromagnetic acoustic transducer multi-field coupling Garlerkin method finite element
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Comparison of three formulations for eddy-current problems in a spiral coil electromagnetic acoustic transducer
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作者 石文泽 吴运新 +3 位作者 龚海 赵志然 范吉志 谭良辰 《Journal of Central South University》 SCIE EI CAS CSCD 2016年第4期817-824,共8页
Three differential equations based on different definitions of current density are compared. Formulation I is based on an incomplete equation for total current density (TCD). Formulations II and {I1 are based on inc... Three differential equations based on different definitions of current density are compared. Formulation I is based on an incomplete equation for total current density (TCD). Formulations II and {I1 are based on incomplete and complete equations for source current density (SCD), respectively. Using the weak form of finite element method (FEM), three formulations were applied in a spiral coil electromagnetic acoustic transducer (EMAT) example to solve magnetic vector potential (MVP). The input impedances calculated by Formulation III are in excellent agreement with the experimental measurements. Results show that the errors for Formulations I & II vary with coil diameter, coil spacing, lift-off distance and external excitation frequency, for the existence of eddy-current and skin & proximity effects. And the current distribution across the coil conductor also follows the same trend. It is better to choose Formulation I instead of Formulation Ili to solve MVP when the coil diameter is less than twice the skin depth for Formulation I is a low cost and high efficiency calculation method. 展开更多
关键词 electromagnetic acoustic transducer (EMAT) eddy current finite element method (FEM) skin and proximity effects spiral coil
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Optimal Design of Electromagnetic Acoustic Transducer
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作者 Eiji Matsumoto Shinji Kitamura Jun Abe 《Journal of Energy and Power Engineering》 2012年第4期561-569,共9页
This paper considers the design of EMAT (Electro-Magnetic Acoustic Transducer) based on numerical simulation. The EMAT consists of an exiting coil and two permanent magnets, which transmits the ultrasonic wave by th... This paper considers the design of EMAT (Electro-Magnetic Acoustic Transducer) based on numerical simulation. The EMAT consists of an exiting coil and two permanent magnets, which transmits the ultrasonic wave by the Lorentz force between the eddy current and the static magnetic field by the magnets. From the experimental result on self-prepared EMATs, the intensity and the directivity of the transmitted wave depend on the widths of the coil and the magnets. By means of EEM analysis the authors attempt to determine the optimal values of the above widths such that both the intensity and the directivity achieve the maximum or allowable performance. 展开更多
关键词 ACOUSTICS actuators eddy current electromagnetic acoustic transducer finite element methods magnetic forces SENSORS
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