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Multi-Analytical Characterization of Corvins’ Castle—Deserted Tower. Construction Materials and Conservation Tests

机译:Corvins Castle Dareated Tower的多分析表征。建筑材料和保护试验

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The aim of this paper is to analyze the construction materials (mortars) of an architectural monument (Deserted Tower (Lilly Tower) from Corvins Castle, Romania). The mortars were characterized following a multidisciplinary approach, combining macroscopic observation with petrographic microscopy, mineralogical analysis (X-ray diffraction) and elemental analysis (X-ray fluorescence), hydric properties, and color of representative samples of the monument. The results revealed the use of gypsum mortars (produced by lumps with higher Fe content), with minor concentrations of crystalline dolomites of the Southern Carpathians, calcite, and quartz. The materials effective porosity and their water absorption capacity were high. A possible solution to consolidate the damaged area with some consolidation products (hydroxyapatite carbonate and its derivatives with Ag and Sr) was investigated, too. The interactions between the mortars specimens and the effectiveness of the consolidation treatments were evaluated by physico-chemical analyses (molecular structure by X-ray powder diffraction (XRPD), wavelength dispersive X-ray fluorescence (WDXRF), dynamic light scattering (DLS)), morphological characterization by microscopic techniques as SEM-EDS, TEM, and physical and mechanical investigations (peeling test and compressive strength). Results were drawn based on historical, in situ observations, and analytical data, and put into evidence the composition, high weathering degree, and the possibility to surface consolidate with Sr-CHAp.
机译:本文的目的是分析建筑纪念碑的建筑材料(迫击炮)(废弃塔(Lilly Tower)来自罗马尼亚Corvins城堡)。迫击炮的特征在于多学科方法,将宏观观察与岩体显微镜,矿物学分析(X射线衍射)和元素分析(X射线荧光),水性性质和纪念碑的颜色组合。结果表明,使用石膏砂浆(由肿块产生的Fe含量产生),南部喀尔巴阡山脉,方解石和石英的次要浓度浓度的结晶白云岩。材料有效孔隙率及其吸水能力高。研究了用一些固结产物(羟基磷灰石碳酸盐及其具有Ag和Sr)的可损坏区域的可能解决方案。通过物理化学分析评估迫击炮标本与固结处理的有效性(通过X射线粉末衍射(XRPD),波长分散X射线荧光(WDXRF),动态光散射(DLS))评估,微观技术作为SEM-EDS,TEM和物理和机械研究(剥离试验和抗压强度)的形态学特征。结果基于历史,原位观察和分析数据,并证明了组成,高风化程度,以及用SR-CHAP表面整合的可能性。

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