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电声显微成像和应用 被引量:3
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作者 殷庆瑞 曾华荣 +2 位作者 杨阳 惠森兴 徐政魁 《电子显微学报》 CAS CSCD 北大核心 2003年第4期338-343,共6页
扫描电声显微镜 (SEAM)是融现代电子光学技术、电声技术、压电传感技术、弱信号检测和脉冲图像处理以及计算机技术为一体的一种新型无损分析和显微成像工具。其成像机理是基于材料的微观热弹性能或者电学性能的变化 ,获取目前其他手段... 扫描电声显微镜 (SEAM)是融现代电子光学技术、电声技术、压电传感技术、弱信号检测和脉冲图像处理以及计算机技术为一体的一种新型无损分析和显微成像工具。其成像机理是基于材料的微观热弹性能或者电学性能的变化 ,获取目前其他手段无法得到的信息。它可以原位 (insitu)同时观察试样的二次电子像和电声像 (SEAM) ,兼有声学显微术非破坏性内部成像和电子显微术高分辨率快速成像的特点。本文重点阐述扫描电声显微镜的工作原理、结构和组成、电声显微成像的特点 ,以及电声成像的基本理论和影响分辨率的主要因素。并显示了扫描电声显微镜在观察功能晶体和陶瓷的电畴结构、金属材料的应力分布、半导体材料的缺陷和位错、MEMS器件的内部信息以及超导陶瓷的相变特性等方面的实际应用。为了和电声成像的实验结果进行比较 ,本文也介绍了在扫描探针显微镜基础上建立起来的扫描探针声学成像技术在电光陶瓷上的实际应用。 展开更多
关键词 扫描电声显微镜 电声成像 电畴结构 应力分布 脉冲图像处理 电声技术 压电传感技术 弱信号检测 电子光学技术
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The Representation of a Broadband Vector Field
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作者 任群 Jean Pierre Hermand 朴胜春 《Journal of Marine Science and Application》 2011年第4期495-501,共7页
Compared to a scalar pressure sensor, a vector sensor can provide a higher signal-to-noise ratio (SNR) signal and more detailed intbrmation on the sound field. Study on vector sensors and their applications have bec... Compared to a scalar pressure sensor, a vector sensor can provide a higher signal-to-noise ratio (SNR) signal and more detailed intbrmation on the sound field. Study on vector sensors and their applications have become a hot topic. Research on the representation of a vector field is highly relevant for extending the scope of vector sensor technology. This paper discusses the range-frequency distribution of the vector field due to a broadband acoustic source moving in a shallow-water waveguide as the self noise of a surface ship, and the vector extension of the waveguide impulse response measured over a limited frequency range using an active source of known waveform. From theory analysis and numerical simulation, the range-frequency representation of a vector field exhibits an interference structure qualitatively similar to that of the corresponding pressure field but, being quantitatively different, provides additional information on the waveguide, especially through the vertical component. For the range-frequency representation, physical quantities that can better exhibit the interference characteristics of the wavegaide are the products of pressure and particle velocity and of the pressure and pressure gradient. An image processing method to effectively detect and isolate the individual striations from an interference structure was reviewed briefly. The representation of the vector impulse response was discussed according to two different measurement systems, also known as particle velocity and pressure gradient. The vector impulse response representation can not only provide additional information from pressure only but even more than that of the range-frequency representation. 展开更多
关键词 acoustic waveguide vector field range-frequency interference structure striation processing impulse response normal mode
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