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Three-Dimensional Surface Texture Characterization of Portland Cement Concrete Pavements

机译:硅酸盐水泥混凝土路面的三维表面纹理表征

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This article investigates the effectiveness of different mathematical methods in describing the threedimensional surface texture of Portland cement concrete (PCC) pavements. Ten PCC field cores of varying surface textures were included in the analysis. X-ray Computed Tomography (CT) was used to scan the upper portion of these cores, resulting in a stack of two-dimensional grayscale images. Image processing techniques were utilized to isolate the void pixels from the solid pixels and reconstruct the three-dimensional surface topography. The resulting three-dimensional surfaces were reduced to two-dimensional "map of heights" images, whereby the grayscale intensity of each pixel within the image represented the vertical location of the surface at that point with respect to the lowest point on the surface. The "map of heights" images were analyzed using four mathematical methods, namely the Hessian model, the Fast Fourier transform (FFT), the wavelet analysis, and the power spectral density (PSD). Results obtained using these methods were compared to the mean profile depth (MPD) computed in accordance with ASTM E1845.
机译:本文研究了各种数学方法在描述波特兰水泥混凝土(PCC)路面三维表面纹理方面的有效性。分析中包括十个表面纹理各异的PCC场磁芯。 X射线计算机断层扫描(CT)用于扫描这些核的上部,从而产生一堆二维灰度图像。利用图像处理技术将空像素与实像素分离并重建三维表面形貌。将生成的三维表面缩小为二维“高度图”图像,从而图像内每个像素的灰度强度表示该点相对于表面最低点的表面垂直位置。使用四种数学方法对“高度图”图像进行了分析,即Hessian模型,快速傅里叶变换(FFT),小波分析和功率谱密度(PSD)。将使用这些方法获得的结果与根据ASTM E1845计算的平均轮廓深度(MPD)进行比较。

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