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首页> 外文期刊>The international journal of pavement engineering >Protocol for the morphology analysis of SBS polymer modified bitumen images obtained by using fluorescent microscopy
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Protocol for the morphology analysis of SBS polymer modified bitumen images obtained by using fluorescent microscopy

机译:通过荧光显微镜获得的SBS聚合物改性沥青图像的形态分析协议

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摘要

Fluorescent technique has been used to characterise the morphology of polymer modified bitumen for years. However, the main problem of this technique is a missing standardised protocol for image capture factors and processing algorithms (CF&PA). The purpose of this study was to find out the effects of CF&PA on morphology and set up a protocol for morphological analysis of SBS polymer-modified bitumen (PMB) using the fluorescent microscopy technique. In order to set up this protocol, fluorescent images were captured and processed with different CF&PA. Capture factors mainly include magnification, exposure time and storage format while processing algorithms include noise reduction, enhancement and segmentation. Morphological and parametric analysis indicated that all images must be captured under the same exposure time and should not be processed by white balance. Besides, four principles should be followed to determine the optimal magnification. As to the image storage format, JPEG 2000 was selected to retain the most details. The proper neighbourhood level was obtained from the particle number curve to realise noise reduction. Compared with other complicated segmentation algorithms, threshold methods are more suitable because of the typical two-phase characteristic of PMB. Because of potential change in detailed information of original images, enhancement was not recommended. Finally, the image capturing and processing steps and their levels were given based on the discussion above.
机译:多年来,荧光技术已用于表征聚合物改性沥青的形态。但是,该技术的主要问题是缺少图像捕获因素和处理算法(CF&PA)的标准化协议。这项研究的目的是找出CF&PA对形态的影响,并建立使用荧光显微镜技术对SBS聚合物改性沥青(PMB)进行形态分析的方案。为了设置此协议,荧光图像被捕获并用不同的CF&PA处理。捕获因素主要包括放大倍率,曝光时间和存储格式,而处理算法包括降噪,增强和分割。形态学和参数分析表明,所有图像都必须在相同的曝光时间下拍摄,并且不应通过白平衡进行处理。此外,应遵循四个原则来确定最佳放大倍率。关于图像存储格式,选择了JPEG 2000以保留最多的细节。从粒子数曲线获得适当的邻域水平以实现降噪。与其他复杂的分割算法相比,阈值方法由于PMB具有典型的两相特性而更加适合。由于原始图像的详细信息可能会发生变化,因此不建议进行增强。最后,基于以上讨论给出了图像捕获和处理步骤及其级别。

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