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首页> 外文期刊>Experimental Mechanics >Ultraviolet Diffraction Assisted Image Correlation (UV-DAIC) for Single-Camera 3D Strain Measurement at Extreme Temperatures
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Ultraviolet Diffraction Assisted Image Correlation (UV-DAIC) for Single-Camera 3D Strain Measurement at Extreme Temperatures

机译:紫外线衍射辅助图像相关(UV-DAIC)在极端温度下单相3D应变测量

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Diffraction Assisted Image Correlation (DAIC) measures three-dimensional (3D) full-field deformations using a single camera. This is accomplished by placing transmission diffraction gratings between the specimen and camera to produce multiple views of the specimen at different angles. The angle at which the image appears depends on the wavelength of light used for illumination, the pitch of the gratings being used, and the diffraction order of the image. In this work, DAIC is modified for use at a higher range of temperatures by using ultraviolet (UV) light for illumination and filtering out the visible spectrum light emitted by high temperature samples. These images were then used for 3D displacement and strain measurements using stereo digital image correlation (3D-DIC). This method was first tested at room temperature by comparing results to known deformation applied as rigid body motion. It was then demonstrated to be effective in making displacement and strain measurements up to a temperature of 900 A degrees C.
机译:衍射辅助图像相关(DAIC)使用单个相机测量三维(3D)全场变形。这是通过将样品和相机之间的传输衍射光栅放置以产生不同角度的多个视图来实现的。图像出现的角度取决于用于照明的光的波长,所使用的光栅的间距以及图像的衍射顺序。在这项工作中,通过使用紫外线(UV)光来修改DAIC以在更高的温度范围内使用,以便照射并滤除由高温样品发射的可见光谱。然后使用立体数字图像相关(3D-DIC)用于3D位移和应变测量的这些图像。通过将结果与作为刚性体运动的已知变形进行比较,首先在室温下测试该方法。然后证明它有效地使位移和应变测量值高达900℃的温度。

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