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Studies of the Performance of Nanostructured and Other Compatible Consolidation Products for Historical Renders

机译:纳米结构及其他兼容固结产品的性能研究

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摘要

This work is inserted in a wider project aiming at the conservation and durability of historical renders,through compatibles techniques and materials; in particular the restitution of cohesion of historical renders,turned friable by the loss of binder due to physical or chemical actions,is studied.Surface consolidation,directed to restore cohesion and stability,is based on the use of materials with aggregating properties.This operation is reached usually through the application of organic or mineral consolidants,but inorganic consolidants (such as calcium hydroxide or ethyl silicate) are preferred due to better compatibility and durability.Based on the results of previous studies,two mineral compatible products were selected: a commercial suspension of nanoparticles of calcium hydroxide in propanol (Nanorestore); a silicate product,consisting on a limewater dispersion of ethyl silicate.Consolidation products were than applied on different mortars samples previously prepared,in order to assess their efficacy by determining their physical,mechanical and microstructural properties before and after the consolidation treatment.Mechanical and physical analyses were performed,such as compression and flexural strenght and superficial hardness.Microstructural and chemical analyses of the consolidation product and of the consolidated samples are also reported.
机译:通过兼容技术和材料,这项工作被插入到一个更广泛的项目中,旨在保护和保留历史作品。尤其是对由于物理或化学作用而失去粘合剂而变得脆弱的历史建筑的内聚力的恢复进行研究。表面加固,旨在恢复内聚力和稳定性,是基于使用具有聚集特性的材料的。通常可以通过应用有机或矿物固结剂来达到,但由于具有更好的相容性和耐久性,因此优选无机固结剂(例如氢氧化钙或硅酸乙酯)。根据先前的研究结果,选择了两种矿物相容的产品:氢氧化钙纳米颗粒在丙醇中的悬浮液(Nanorestore);然后将固结产品应用于先前制备的不同砂浆样品上,以便通过在固结处理之前和之后确定其物理,机械和微观结构性质来评估其功效。进行了压缩,弯曲强度和表面硬度等分析。还报道了固结产品和固结样品的微观结构和化学分析。

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