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Mineralogical Textural and Physical Characterisation to Determine Deterioration Susceptibility of Irulegi Castle Lime Mortars (Navarre Spain)

机译:矿物学组织学和物理表征以确定Irulegi城堡石灰砂浆的易变性(西班牙Navarre)

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摘要

Archaeological lime mortars from the Tower Keep and West perimeter wall of Irulegi Castle (Navarre, Spain) were analysed to determine susceptibility to deterioration. Chemical, mineralogical, textural and physical characterisation was performed by different tests and multianalysis techniques in order to determine the intrinsic features of the original historical mortars at the castle. Samples from the Tower Keep are more prone to deteriorate compared with the West perimeter wall due to high water absorption capacity and high porosity. A high degree of pore interconnection, high desorption index and the presence of high pore volume in the 0.01 to 1 µm size range affect the mortar durability since pores retain water longer inside the mortar. Local environment conditions with persistent annual rainfall, high humidity and temperature variations contribute to the decay process of the original mortar. Characterisation of historical mortars not only allows better understanding of susceptibility to deterioration but also helps the design of compatible and durable repair mortar for future interventions on historical heritage. Compatibility of new materials with the historical mortar will be ensured by studying mortar characteristics and properties.
机译:分析了来自Irulegi Castle(西班牙Navarre)的Tower Keep和西周墙的考古石灰砂浆,以确定其易变质性。化学,矿物学,质地和物理表征是通过不同的测试和多重分析技术进行的,目的是确定该城堡原始历史迫击炮的内在特征。与高高的吸水率和高孔隙率相比,与西部围墙相比,塔楼城堡的样品更容易劣化。孔隙的高度连通性,高的解吸指数和0.01至1 µm尺寸范围内高孔隙体积的存在会影响砂浆的耐久性,因为孔隙会在砂浆内部保留更长的水分。当地的环境条件以及持续不断的年降雨,高湿度和温度变化导致原始砂浆的腐烂过程。对历史迫击炮进行表征不仅可以更好地了解其易变质性,而且还可以帮助设计兼容和耐用的修补砂浆,以用于将来对历史遗产的干预。通过研究砂浆的特性和性能,可以确保新材料与历史砂浆的相容性。

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