The homogeneity of filter media is important for material selection and quality control, along with the specific weight (nominal grammage) and the distribution of the local weight. Cloudiness or formation is a concept used to describe deviations from homogeneity in filter media. We suggest to derive the cloudiness index from the power spectrum of the relative local areal weight, integrated over a selected frequency range. The power spectrum captures the energy density in a broad spectral range. Moreover, under certain conditions, the structure of a nonwoven is fully characterized by the areal weight, the variance of the local areal weight, and the power spectrum. Consequently, the power spectrum is the parameter that exclusively reflects the cloudiness. Here, we address questions arising from practical application. The most prominent is the choice of the spectral band. It certainly depends on the characteristic "size of the clouds", but is limited by the size and lateral resolution of the images. We show that the cloudiness index based on the power spectrum of the relative local areal weight is theoretically well founded and can be robustly measured from image data. Choosing the spectral band allows to capture the cloudiness either visually perceived or found to be decisive for product properties. It is thus well suited to build a technical standard on it.
翻译:过滤介质的均匀性对于材料选择和质量控制以及局部重量的分布非常重要。云度或形成度是用于描述过滤介质中偏离均匀性的概念。我们建议从相对局部面积重量的功率谱中导出云度指数,该指数在选择的频率范围内被集成。功率谱捕获了广泛频谱范围内的能量密度。此外,在某些条件下,非织造物的结构完全由面积重量、局部面积重量的方差和功率谱来刻画。因此,功率谱是唯一反映云度的参数。在这里,我们解决了实际应用中出现的问题。最突出的是频谱范围的选择。它当然取决于“云”的特征尺寸,但受到图像的大小和横向分辨率限制。我们展示了基于相对局部面积重量的功率谱的云度指数理论上是有基础的,可以从图像数据中稳健地测量。选择频谱范围允许捕捉直观感觉或者发现对于产品属性至关重要的云度。因此,它非常适合建立技术标准。