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数字图像相关技术在空间和频域中用于聚合物薄膜变形分析的应用

Application of Digital Image Correlation in Space and Frequency Domains to Deformation Analysis of Polymer Film.

作者信息

Kopfler Caroline, Yoshida Sanichiro, Ghimire Anup

机构信息

Department of Chemistry & Physics, Southeastern Louisiana University, Hammond, LA 70402, USA.

出版信息

Materials (Basel). 2022 Mar 1;15(5):1842. doi: 10.3390/ma15051842.

Abstract

Using speckle patterns formed by an expanded and collimated He-Ne laser beam, we apply DIC (Digital Image Correlation) methods to estimate the deformation of LLDPE (linear low-density polyethylene) film. The laser beam was transmitted through the film specimen while a tensile machine applied a load to the specimen vertically. The transmitted laser light was projected on a screen, and the resultant image was captured by a digital camera. The captured image was analyzed both in space and frequency domains. For the space-domain analysis, the random speckle pattern was used to register the local displacement due to the deformation. For the frequency-domain analysis, the diffraction-like pattern, due to the horizontally-running, periodic groove-like structure of the film was used to characterize the overall deformation along vertical columns of analysis. It has been found that when the deformation is small and uniform, the conventional space domain analysis is applicable to the entire film specimen. However, once the deformation loses the spatial uniformity, the space-domain analysis falls short if applied to the entire specimen. The application of DIC to local (windowed) regions is still useful but time consuming. In the non-uniform situation, the frequency-domain analysis is found capable of revealing average deformation along each column of analysis.

摘要

利用由扩束准直氦氖激光束形成的散斑图案,我们应用数字图像相关(DIC)方法来估计线性低密度聚乙烯(LLDPE)薄膜的变形。激光束透过薄膜试样,同时拉伸机对试样垂直施加负载。透射的激光投射在屏幕上,所得图像由数码相机捕获。对捕获的图像在空间域和频率域进行分析。对于空间域分析,利用随机散斑图案来记录由于变形引起的局部位移。对于频率域分析,利用由于薄膜水平方向上周期性的槽状结构而产生的类似衍射的图案来表征沿垂直分析列的整体变形。已发现,当变形小且均匀时,传统的空间域分析适用于整个薄膜试样。然而,一旦变形失去空间均匀性,若将空间域分析应用于整个试样,就会存在不足。将DIC应用于局部(加窗)区域仍然有用,但耗时。在非均匀情况下,发现频率域分析能够揭示沿每列分析的平均变形。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c342/8911662/53f1d0196023/materials-15-01842-g0A1.jpg

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