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Artificial weathering and non-destructive tests for the performance evaluation of consolidation materials applied on porous stones

机译:人工风化和非破坏性试验,用于评估多孔石材上固结材料的性能

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The evaluation of consolidation treatment efficiency in terms of improving the resistance of treated lithotypes to deterioration phenomena caused by soluble salts crystallisation, is taking place through dynamic artificial weathering accelerated tests of marine salt spray. Quarried biocalcarenites from Greece and Cyprus have been treated with four consolidation materials (diversified according to their deposition mechanism). The materials applied are colloidal dispersion of silica, pre-hydrolysed ethyl silicate with amorphous silica, ethyl silicate in ethanol and acryl-siliconic resin in organic solvents. The treated stone samples are placed in an artificial weathering chamber, where they remain for nearly two months, being attacked by severe quantities of marine salt spray. The application of non-destructive techniques (weight and ultra sonic velocity measurements, deteriorated surface analysis by a camera-laser scanning system) during the salt spray simulations verified the improvements presented to the consolidated biocalcarenite samples in comparison to the untreated ones. Consolidated samples present weight stability during the tests, increase in ultra sonic velocity and minor fluctuations on it, and less roughness increase and grain detachment during the simulations. Deductions among the consolidants are made indicating the superiority of ethyl silicate as an appropriate consolidant for those biocalcarenites, as it has arisen from these certain tests.
机译:通过改进人工盐化加速海水盐雾试验,对固结处理效率进行了评估,以提高处理后的石版印刷版对由可溶性盐结晶引起的变质现象的抵抗力。来自希腊和塞浦路斯的采石生物钙钙石已用四种固结材料(根据其沉积机理进行了分类)处理。所使用的材料是二氧化硅的胶体分散体,预水解的硅酸乙酯与无定形硅石,在乙醇中的硅酸乙酯和在有机溶剂中的丙烯酸硅树脂。经过处理的石材样品被放置在人工风化室中,在那里受到近乎大量的海水盐雾的侵蚀,将它们放置了近两个月。在盐雾模拟过程中应用无损技术(重量和超声波速度测量,通过照相机激光扫描系统进行的表面恶化分析),与未处理样品相比,证实了固结生物钙铝石样品的改进。固结的样品在测试过程中表现出重量稳定性,在超声波速度中增加且波动幅度较小,并且在模拟过程中粗糙度增加和晶粒分离较少。从固结剂中得出的推论表明,硅酸乙酯作为那些生物钙钙石的合适固结剂的优越性,正如从某些试验中得出的那样。

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