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Evaluation of properties of magnesian lime mortar

机译:镁石灰砂浆性能评价

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Due to their nature and function, historic lime mortars weather and often need to be replaced. Petrographic analysis of original mortars from Ardamullivan Castle evidenced that they were fabricated with a dolomitic limestone. Within, Ardamullivan Castle's conservation programme it was considered to replicate the original mortars to undertake conservation works to the Castle. However, documentary research revealed that there is a lack of agreement on the properties of magnesian lime as well as a lack of experimental work in the subject. Therefore, it was deemed necessary to evaluate the properties of magnesian lime prior to its use. To this aim, dolomite was calcinated in a limekiln and the lime obtained slaked for a year. Magnesian lime mortars were then fabricated and tested in the laboratory. Porosity, densities, compressive strength, capillary suction and absorption were evaluated. The lower values of capillary raise, porosity and absorption obtained for the magnesian lime mortars when compared to those of feebly hydraulic limes suggest that magnesian lime binders would perform superiorly in areas subject to the presence of moisture. In compression, the feebly-hydraulic mix is four times stronger than the mg-lime mortar. The mg-lime mortar outperforms the feebly-hydraulic lime mix in all tests except for compressive strength. However, the compressive strength of the mg-lime mix is enough to withstand the stresses and strains typically induced when confined within conventional masonry. The results of this investigation suggest that, provided the lime has been adequately calcinated and slaked, mg-lime mortar can perform well as a building material.
机译:由于他们的性质和功能,历史悠久的石灰迫击炮天气,通常需要更换。来自Ardamullivan城堡的原始迫击炮的岩化分析证明了它们用多摩尔石灰石制造。在Ardamullivan城堡的保护计划中,它被认为是复制原来的迫击炮,以对城堡进行保护作品。然而,纪录片研究表明,缺乏镁质石灰的性质以及缺乏对象的实验工作的一致性。因此,认为有必要在使用之前评估镁石灰的性质。为此目的,白云石在Limekiln中煅烧,并获得了一年的石灰。然后在实验室制造并测试氧化镁灰泥。评价孔隙率,密度,抗压强度,毛细吸附和吸收。与虚线液压液体相比,镁石灰砂浆的毛细血管升高,孔隙率和吸收的较低值表明,镁质石灰粘合剂将在受水分存在面积的区域中进行优势。在压缩中,无力 - 液压混合物比Mg-in-inile砂浆强四倍。除抗压强度外,Mg-Lime砂浆在所有测试中均匀地表达了无力液压石灰混合。然而,Mg-Lime混合物的抗压强度足以承受通常在常规砌体内限制时诱导的应力和菌株。本研究结果表明,只要石灰已被充分煅烧和纤维,Mg-Lime砂浆可以作为建筑材料。

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