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Investigating the manufacturing technology and durability of lime mortars from Amaiur Castle (Navarre, Spain): A chemical-mineralogical and physical study

机译:调查amaiur城堡的石灰砂浆的制造技术和耐用性(Navarre,Spain):化学矿物学和物理研究

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摘要

Mineralogical, chemical and physical characterization of archaeological lime mortars from different structures at Amaiur Castle (Navarre, Spain) was accomplished in order to comprehend their durability. Mortars from the south-west of the 16th century filling and bastion, and the south-east mortars of the 17th century bastion are the most susceptible to deterioration due to their textural features. The high porosity and water absorption capacity, the poor interconnection of pores and slow drying are the main factors contributing to deterioration of mortar at Amaiur Castle. The mineralogical study enabled an approach to the technological knowledge used in the lime mortar manufacturing process at Amaiur Castle. Hydrotalcite and hydromagnesite identified in the mortar binder support the use of the traditional hot-mixing method during mortar manufacturing. This work provides valuable references for the formulation of compatible repair mortars to ensure suitable conservation of the castle as well as of other ancient structures built with similar materials. (C) 2021 Elsevier Ltd. All rights reserved.
机译:完成了Amaiur城堡(纳瓦尔,西班牙)的不同结构的矿物学,化学和物理特性,以理解其耐用性。来自16世纪灌装和堡垒的迫击炮,17世纪的堡垒的东南迫击炮是由于其纹理特征,最容易恶化。高孔隙度和吸水能力,孔隙互连差和缓慢干燥是砂浆在Amaiur城堡劣化的主要因素。矿物学研究能够实现Amaiur城堡的石灰砂浆制造过程中使用的技术知识。砂浆粘合剂中鉴定的水滑石和水质碎石支持在砂浆制造过程中使用传统的热混合方法。这项工作为制定兼容性修复迫击炮提供了有价值的参考,以确保适当地保护城堡以及以类似材料建造的其他古代结构。 (c)2021 elestvier有限公司保留所有权利。

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