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Study of mechanical properties of alkaline earth hydroxide nanoconsolidants for lime mortars

机译:石灰砂浆用碱土金属氢氧化物纳米固化剂的力学性能研究

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This research intends to study and optimize successful preparative strategies of nano to sub-micro limes, and to improve their efficiency in the inhibition of the degradation process and in the consolidation of wall renders. In this article we report the synthesis and characterization of nanoparticles based on alkali-earth metal hydroxides, precisely calcium and magnesium hydroxides nanoparticles (Ca(OH)(2) and Mg(OH)(2)) dispersed in ethanol and 2-propanol, for cultural heritage restoration. We discuss the tests conducted to assess the mechanical properties' alteration of lime mortar specimens treated with these nanolimes (superficial hardness, dynamic elastic modulus, compressive and flexural mechanical behaviour). Particularly, the influence of the dispersions' concentration, number of applications (layers) and the slope of the treated surface during the dispersions application on the mechanical properties has been studied. The treatment with nanolime resulted in an improvement of the mechanical properties of the treated specimens. This effect is proportional to the number of layers applied and to the concentration of the alcohol dispersion applied. We also report our attempt to achieve better particles morphology by the addition of surfactants: the non-ionic t-octylphenoxypolyethoxyethanol (Triton X-100) in the synthesis of Ca(OH)(2) and the cationic hexadecyltrimethylammonium bromide (CTAB) in the synthesis of Mg (OH)(2). (C) 2019 Elsevier Ltd. All rights reserved.
机译:这项研究旨在研究和优化从纳米到亚微米石灰的成功制备策略,并提高其在抑制降解过程和墙面抹灰固结中的效率。在这篇文章中,我们报告了基于碱土金属氢氧化物的纳米颗粒的合成和表征,确切地说是分散在乙醇和2-丙醇中的氢氧化钙和氢氧化镁纳米颗粒(Ca(OH)(2)和Mg(OH)(2)),用于文化遗产的修复。我们讨论为评估用这些纳米石灰处理的石灰砂浆样品的机械性能变化而进行的测试(表面硬度,动态弹性模量,压缩和弯曲机械性能)。特别地,已经研究了分散体的浓度,分散体的施加次数(层)和在分散体施加过程中处理过的表面的斜率对机械性能的影响。纳米石灰的处理导致处理样品的机械性能的改善。该效果与施加的层数和所施加的醇分散体的浓度成比例。我们还报告了通过添加表面活性剂来实现更好的颗粒形态的尝试:在Ca(OH)(2)的合成中使用非离子型叔辛基苯氧基聚乙氧基乙醇(Triton X-100),在表面使用阳离子型十六烷基三甲基溴化铵(CTAB) Mg(OH)(2)的合成。 (C)2019 Elsevier Ltd.保留所有权利。

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