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- Electronic Speckle Pattern Interferometry is used to study on the surface corrosion of carbon steel in this paper. 摘要运用电子散斑干涉法研究碳钢腐蚀的面内位移。
- An improved electronic speckle pattern interferometry(ESPI) is presented to overcome the difficulty of ESPI in large displacement measurements. 针对电子散斑干涉(ESPI)法处理大位移时的困难,提出了一种改进的ESPI法。
- Electronic speckle pattern interferometry(ESPI) technique combining with high speed CCD is used to record whole field real time dynamic displacement. 采用高速摄像与ESPI技术相结合,将运动中的被测物位移随时间变化的状态以序列图像的形式实时记录,并运用图像处理技术,成功地实现了ESPI动态测量。
- The development and applications of the electronic speckle pattern interferometry(ESPI)for vibration measurement are reviewed. 综述电子散斑在振动测量中的发展和应用,对电子散斑测振的各种方法进行评价。
- This research presents the construction and operation of an electronic speckle pattern interferometer (ESPI) applied to sandwich plates with inserts. 本研究呈现应用电子斑点干涉术(ESPI)于镶入扣件三明治蜂巢板量测的建构与操作。
- Wykes, C.,“Use of Electronic Speckle Pattern Interferometry (ESPI) in the Measurement of Static and Dynamic Surface Displacement,” Optical Engineering, 21(3), 400-406 (1982). 黄吉宏,应用振幅变动电子斑点干涉术探讨三维压电材料体及含裂纹板的振动问题,国立台湾大学机械工程研究所博士论文,87年6月.
- A reference laser beam is added to dual beam symmetric illumination electronic speckle pattern interferometric (ESPI) system and is shared by the two illumination beams. 在双光束电子散斑干涉系统中增加一路参考光,使这一路参考光为两光束所共用。
- In this dissertation, electronic speckle pattern interferometry (ESPI) with high speed CCD camera was adopted to achieve full-filed deformation measurement. 本研究中以高速CCD开发出一套具有暂态全域变形检测的电子斑点干涉(ESPI)系统,藉由极短的曝光时间与精准的时序控制成功地得到一系列的暂态资讯。
- The strength and fracture mechanism analysis of conducting polythiophene thin film is carried out by means of electronic speckle pattern interferometry (ESPI) and SEM observation. 对用电化学方法制备的导电聚噻吩薄膜材料进行了拉伸破坏实验,并用电子散斑干涉法测量了力与变形关系同时用扫描电镜对材料的断口进行了断裂机理分析。
- Electronic speckle Pattern interferometry can not only quantificationally cipher out in-plane displacement as a result of corrosion, but also estimate the change of corrosion speed. 电子散斑干涉法不仅能定量测得腐蚀的面内位移,而且能得到腐蚀速度的大小。
- Traditional speckle fringe patterns by electronic speckle pattern interferometry (ESPI) are inherently noisy and of limited visibility, so denoising is the key problem in ESPI. 原始的电子散斑干涉条纹图中含有很强的颗粒性噪声,对比度很差,因此去除噪声是电子散斑干涉测量技术的关键问题。
- On Electronic Speckle Pattern Interferometry 电子散斑干涉术
- Improved electronic speckle pattern interferometry 改进的电子散斑干涉法
- electronic speckle pattern interferometry 电子散斑干涉
- electronic speckle pattern interferometry(ESPI) 电子散斑干涉(ESPI)
- electronic speckle pattern interfermetry ( ESPI ) 电子散斑干涉
- Electronic Speckle Pattern Interferometry (ESPI) 电子散斑干涉
- ESPI(Electronic Speckle Pattern Interferometry) 电子散斑
- Electronic Speckle Pattern Interfermetry (ESPI) 电子散斑干涉
- Spatial Modulation and Demodulation for Electronic Speckle Patterns 电子散斑干涉场的空间调制与解调技术