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Electronic Speckle Pattern Shearing Interferometry Using Photopolymer Diffractive Optical Elements for Vibration Measurements

机译:使用光聚合物衍射光学元件进行振动测量的电子散斑剪切干涉仪

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Electronic speckle pattern shearing interferometry (ESPSI) is superior to Electronic speckle pattern interferometry (ESPI) when strain distribution, arising from object deformation or vibration, need to be measured. This is because shearography provides data directly related to the spatial derivatives of the displacement. Further development of ESPSI systems could be beneficial for wider application to the measurement of mechanical characteristics of vibrating objects. Two electronic speckle pattern shearing interferometers (ESPSI) suitable for vibration measurements are presented. In both ESPSI systems photopolymer holographic gratings are used to shear the images and to control the size of the shear. The holographic gratings are recorded using an acrylamide-based photopolymer material. Since the polymerisation process occurs during recording, the holograms are produced without any development or processing. The ESPSI systems with photopolymer holographic gratings are simple and compact. Introducing photopolymer holographic gratings in ESPSI gives the advantage of using high aperture optical elements at relatively low cost. It is demonstrated that both ESPSI system can be used for vibration measurements. The results obtained are promising for future applications of the systems for modal analysis.
机译:当需要测量由于物体变形或振动引起的应变分布时,电子散斑剪切干涉术(ESPSI)优于电子散斑干涉术(ESPI)。这是因为剪切成像提供了与位移的空间导数直接相关的数据。 ESPSI系统的进一步开发可能有益于更广泛地应用于振动物体的机械特性的测量。介绍了两种适用于振动测量的电子散斑图案剪切干涉仪(ESPSI)。在两个ESPSI系统中,均使用光聚合物全息光栅来剪切图像并控制剪切的大小。全息光栅是使用基于丙烯酰胺的光敏聚合物材料记录的。由于聚合过程是在记录过程中发生的,因此无需任何显影或处理即可产生全息图。带有光聚合物全息光栅的ESPSI系统既简单又紧凑。在ESPSI中引入光聚合物全息光栅具有以相对较低的成本使用高孔径光学元件的优势。事实证明,两种ESPSI系统均可用于振动测量。所获得的结果有望用于系统的模态分析。

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