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Micro-topographic and Geotechnical Investigations of sandstone Wall on Weathering Progress, Aachen City, Germany, case study

机译:砂岩墙上的微观地形和岩土性调查,德国亚琛市亚琛市,案例研究

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摘要

Rock's surface micro-topography and geotechnical properties' limits are almost altered, on weathering progress, to a new form(s) and limits, respectively. The quantification of weathering damage for a given rock is of value, e.g., to compute weathering rate, weathering intensity, and rock's durability to weathering processes and to take a decision regarding restoration urgency. The current study aims to examine the variation/constancy of micro-topography and geotechnical properties' limits of the sandstone constituting well-aged wall, at Aachen City, on weathering progress over short duration (7 years of investigation from 2007 to 2014). The micro-erosion meter and Equotip hardness tester are tools used for micro-topographic and rock's surface hardness investigations on one hand, and the mercury intrusion porosimetry has been used for pore size distribution and salt susceptibility investigations on the other hand. These tools are accurate, numerical, comprehensive, easily applicable, and preferable particularly for ancient buildings where sampling is not recommended or prohibited. The wall side under consideration has been selected as its constructional blocks present a wide spectrum of weathering forms as well as rock's surface micro-topography (over 7 years of investigation) through increasing the weathering forms' dimensions and/or creation of new weathering forms. The net result of the current study indicated a noticeable variation in stone's micro-topography on weathering progress particularly for stones' surface with scaling, exfoliation, and a decrease in stone's surface hardness. The critical pore size distribution that has increased rock's susceptibility to weathering particularly by salts has been defined.
机译:岩石的表面微观形貌和岩土性质的限制几乎改变了风化进展,分别对新形式和限制。给定岩石的风化损伤的量化是值,例如,计算风化速率,耐候性和岩石对风化过程的耐用性,并对恢复紧迫性作出决定。目前的研究旨在研究构成亚琛市砂岩的微地形和岩土性质的变化/恒定,在亚琛城,亚琛城,在持续时间内的风化进展(从2007年到2014年的7年调查)。微侵蚀仪表和单位硬度测试仪是用于微地形和岩石表面硬度调查的工具,汞侵入孔隙率为另一方面用于孔径分布和盐易感性调查。这些工具准确,数值,全面,易于适用,特别适用于古老建筑,不推荐或禁止采样。通过增加风化形式的尺寸和/或创建新的风化形式,因此选择了所考虑的所考虑的壁块以及岩石的表面微观形式(岩石表面微型)以及岩石的表面微型(经过7年超过7年)。目前研究的净结果表明了石头微观地形上的明显变化,特别是对于具有缩放,剥离和石材表面硬度下降的石头表面的耐候性进展。已经定义了岩石易感性易感性易感性的临界孔径分布。

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