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Stone Monuments Consolidation with Nanomaterials

机译:用纳米材料合并石纪念碑

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Historical monuments suffer different forms of degradation, due to some improper works on architecture structure, vibrations caused by blasting, traffic, the inadequate restoration, the phenomenon of freeze-thaw, air pollution, humidity and temperature variations, friable mortar, deposits adhering impurities (dust, smoke, tar), soluble efflorescence, poorly soluble or insoluble salts (nitrate, sulfate, chloride, carbonate), and the action of microorganisms. Nowadays, the nanomaterials represent an alternative in architecture conservation, mainly due to their improved mechanical properties, their compatibility as consolidating materials, and because they obey the principle of authenticity of historical monuments. In this paper, hydroxyapatite nanoparticles (HAp) are applied to the chalk samples prelevated from Basarabi monument. Some physico-chemical and mechanical properties have been evaluated and discussed for untreated chalk stone and for the treated one with HAp.
机译:历史纪念碑遭受不同形式的退化,由于架构结构的一些不当,爆破造成的振动,交通,恢复不足,冻融的现象,空气污染,湿度和温度变化,脆弱的砂浆,沉积粘附杂质(灰尘,烟雾,焦油),可溶性兴坏,溶于差或不溶性盐(硝酸盐,硫酸盐,氯化物,碳酸盐)和微生物的作用。如今,纳米材料代表了建筑保护中的替代方案,主要是由于它们改善的机械性能,它们作为巩固材料的兼容性,以及他们遵守历史古迹真实性的原则。在本文中,将羟基磷灰石纳米颗粒(HAP)应用于从Basarabi纪念碑前列的粉笔样品上。已经评估了一些物理化学和机械性能,并讨论了未处理的粉笔石头,并讨论过治疗的HAP。

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