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ESPI with synchronized pressure stressing

机译:具有同步压力应力的ESPI

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Abstract: detection of disbonds in aluminum composites is demonstrated using electronic speckle pattern interferometry combined with synchronized pressure stressing. The surface on the test specimen is periodically pressure stressed in synchronization with the image acquisition rate of an image processor. This is achieved by using a two-port, low volume, transparent vacuum chamber mounted on the specimen. One of the ports of the vacuum chamber is connected to a constant vacuum source, and the other is connected to the ambient via a solenoid valve that is periodically opened and closed in synchronization with the image acquisition. Furthermore, illumination of the specimen is also synchronized with the stressing. Speckle images of the surface of the specimen undergoing high and low pressure stressing are combined with a reference speckle image and acquired at the image acquisition frequency of the detecting CCD camera. Every two consecutive images are then subtracted in the image processor and displayed in real-time. In this manner, excellent noise reduction is achieved, rejecting the effects of low frequency noise contributions such as slow object drift, air current, and thermal gradients in/around the specimen found in typical industrial environments.!8
机译:摘要:利用电子散斑干涉法结合同步压力应力,证明了铝复合材料中脱胶的检测。与图像处理器的图像采集速率同步,定期对试样表面施加压力。这是通过使用安装在样品上的两端口,小体积,透明的真空室实现的。真空室的一个端口连接到恒定的真空源,另一个端口通过电磁阀连接到环境,该电磁阀与图像采集同步地定期打开和关闭。此外,试样的照明也与应力同步。将经受高和低压应力的样本表面的斑点图像与参考斑点图像合并,并以检测CCD摄像机的图像采集频率进行采集。然后每两个连续的图像在图像处理器中减去并实时显示。通过这种方式,可以实现出色的降噪效果,从而消除了低频噪声贡献的影响,例如缓慢的物体漂移,气流以及在典型工业环境中发现的样品中/样品周围的热梯度!8

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