Assessment of Construction Materials Trends Salt Content from Scanned Images

Author:

Afonin V V,Yelchischeva T F,Svetlov D A,Zotkina M M,Erofeeva I V,Emelyanov D V

Abstract

Abstract Composite building materials subjected to such operational influences as high humidity and temperature have been investigated. As a result of the experiments carried out within 45 days of the samples, their scanned images were obtained, which were represented by RGB color models and processed in order to identify changes in their color properties. Samples of materials are ranked by revealing a tendency to salt formation on their surface. Depending on the change in the brightness of the samples during their exposure, the images of the samples are divided into two groups, one of which contains images that at the last exposure area have a higher level of brightness relative to the control sample, approaching white. The second group is characterized by lower brightness values also relative to the control sample. As a result, samples are identified, the images of which have a noticeable tendency to salt formation, which is controlled by the level of white brightness.

Publisher

IOP Publishing

Subject

General Medicine

Reference35 articles.

1. Influence of basalt fiber on strength and deformative properties of fine-grained high-strength concrete;Khozin,2014

2. Methods and algorithms for assessing the quality of the surface of building products and structures;Erofeev;Fundamental Research,2016

3. Study of the resistance of polymer coatings under the influence of climatic factors of the Black Sea coast;Erofeev;Fundamental Research,2016

4. Development of construction materials as complex systems;Danilov;Regional Architecture and Construction,2016

5. Study of the behavior of cement composites in conditions of increased humidity and variable positive temperature;Erofeeva;Int. J. for Computational Civil and Structural Engineering,2017

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