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UNDERSTANDING THE FEATURES OBSERVED IN CONCRETE USING VARIOUS FLUORESCENCE IMPREGNATION TECHNIQUES

机译:使用各种荧光浸渍技术理解混凝土中观察到的特征

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Many countries especially in Europe uses yellow fluorescent impregnated thin sections when examining concrete in the optical microscope. This technique makes is possible to observe a great number of textures within in the concrete which often are impossible or difficult to observe by any other method Another method which can be used in addition to the fluorescent impregnated thin sections are fluorescence impregnated plane sections. By this method a full size core or sample is impregnated revealing structure, aggregate distribution and homogeneity of the concrete sample.Combined the two methods give information on features such as porosity of aggregates and cement paste, crack types (width, length and pattern) water to cement ratio (w/c) and air void amount and distribution.It is, however, not only important to observe the features, it is also important to be able to interpret the features in such a way that their origin can be understood: why did they form, how did they form and when did they form. The processes which have formed the features all leave their fingerprints. For example features formed in the non-hardened concrete look completely different from features formed in hardened concrete. If these differences are not known to the observer a totally wrong diagnosis may be reached, leading to erroneous results.
机译:在光学显微镜中检查混凝土时,许多国家(尤其是在欧洲)使用黄色荧光灯浸渍的薄切片。该技术使得可以观察到混凝土中大量的纹理,而这些纹理通常是无法通过任何其他方法观察到的或难以观察到的。除了荧光浸渍的薄片之外,可以使用的另一种方法是荧光浸渍的平面部分。通过这种方法,可以浸入全尺寸的核或样品,从而显示出混凝土样品的结构,骨料分布和均匀性。 结合这两种方法可以提供有关特征的信息,例如集料和水泥浆的孔隙率,裂缝类型(宽度,长度和样式),水与水泥的比例(w / c)以及气孔的数量和分布。 但是,不仅要观察特征,而且以能够理解其起源的方式解释特征也很重要:它们为什么形成,如何形成以及何时形成。形成特征的过程都留下了指纹。例如,在未硬化的混凝土中形成的特征看起来与在硬化的混凝土中形成的特征完全不同。如果观察者不知道这些差异,则可能会得出完全错误的诊断,从而导致错误的结果。

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