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Asphalt Internal Structure Characterization with X-Ray Computed Tomography and Digital Image Processing

机译:沥青内部结构表征X射线计算机断层扫描和数字图像处理

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In this paper, detailed study is carried out to develop a new workflow from image acquisition to numerical simulation for the asphalt concrete micro-structures. High resolution computed tomography scanned images are acquired and the image quality is improved using digital image processing techniques. Nonuniform illumination is corrected by applying an illumination profile to correct the background and flat-fields in the image. Distance map based watershed segmentation are used to segment the phases and separate the aggregates. Quantitative analysis of the micro-structure is used to determine the phase volumetric relationship and aggregates characteristics. The result of the quantitative analysis showed a very high level of reliability. Finite Element simulations were carried out with the developed micro-mechanical meshes to capture the strength and deformation mechanisms of the asphalt concrete micro-structure. From the micro-mechanical investigation the load transfer chains, higher strength characteristics and high stress localization at the mastic interface between adjacent aggregates was shown.
机译:在本文中,进行了详细研究,以开发从图像采集到沥青混凝土微结构的数值模拟的新工作流程。获取高分辨率计算断层扫描扫描图像,并且使用数字图像处理技术改进了图像质量。通过施加照明曲线来校正不均匀的照明以校正图像中的背景和平面。基于距离图的流域分段用于分割阶段并分离聚集体。微结构的定量分析用于确定相体积关系和聚集特性。定量分析的结果显示出非常高的可靠性。用开发的微机械网进行有限元模拟,以捕获沥青混凝土微结构的强度和变形机制。从微机械调查中,显示了相邻聚集体之间的乳香界面处的载荷转移链,更高的强度特性和高应力定位。

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