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Diffractive optical element in materials testing

机译:材料测试中的衍射光学元件

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Abstract: The object of this paper is to present a sensor based on diffractive optics that can be applied for the materials testing. The present sensor, which is based on the use of a computer-generated hologram (CGH) exploits the holographic imagery. The CGH-sensor was introduced for inspection of surface roughness and flatness of metal surfaces. The results drawn out by the present sensor are observed to be in accordance with the experimental data. Together with the double exposure holographic interferometry (DEHI) and digital electronic speckle pattern interferometry (DSPI) in elasticity inspection, the sensor was applied for the investigations of surface quality of opaque fragile materials, which are pharmaceutical compacts. The optical surface quality was observed to be related to the porosity of the pharmaceutical tablets. The CGH-sensor was also applied for investigations of optical quality of thin films as PLZT ceramics and coating of pharmaceutical compacts. The surfaces of PLZT samples showed fluctuations in optical curvature, and wedgeness for all the cases studied. For pharmaceutical compacts, the optical signals were observed to depend to a great extent on the optical constants of the coatings and the substrates, and in addition to the surface porosity under the coating. !20
机译:摘要:本文的目的是提出一种基于衍射光学的传感器,该传感器可用于材料测试。基于计算机生成的全息图(CGH)的使用的本传感器利用了全息图像。引入了CGH传感器以检查金属表面的表面粗糙度和平面度。观察到由本传感器得出的结果与实验数据一致。与弹性检查中的二次曝光全息干涉法(DEHI)和数字电子散斑图案干涉法(DSPI)一起,该传感器被用于研究不透明的易碎材料的表面质量,这些材料是药物压块。观察到光学表面质量与药物片剂的孔隙率有关。 CGH传感器还用于研究PLZT陶瓷薄膜和药物压块涂层的光学质量。在所有研究的情况下,PLZT样品的表面均显示出光学曲率和楔度的波动。对于药物压块,观察到的光信号在很大程度上取决于涂层和基材的光学常数,以及涂层下的表面孔隙率。 !20

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