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Role of petrography in durability of limestone used in construction of Persepolis complex subjected to artificial accelerated ageing tests

机译:岩石学在经过人工加速老化测试的波斯波利斯综合体建筑中使用的石灰石耐久性中的作用

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Persepolis historical complex hosts palaces and tombs which are constructed by stone blocks. These stones suffer from various weathering. Hence, in this study, physico-mechanical properties of Persepolis stone are investigated in relation to some important weathering factors including freezing-thawing, thermal shock and salt crystallization. This study focused on role of the stone petrography on its durability against the weathering factors. Petrography studies showed that the stone is a nonporous-impermeable bioclastic-packstone which suffered significant diagenesis pressures and contain fractures filled by clay. Based on the obtained results, most of the observed deterioration for the stone is related to freezing-thawing cycles. The freezing-thawing cycles induced significant losses in the stone mechanical properties. Similar variations were recorded after the salt crystallization and thermal shock cycles, although the changes in the stone properties were not to the extent of freezing-thawing. Assessing values of decay constant () and half-time (N-1/2) obtained for the stone in relation to the ageing test cycles showed that freeze-thaw and thermal shock have more deteriorative effects on the stone durability than salt crystallization. It is suggested that porosity is the main factor that controls the Persepolis stone durability. Low permeability of the stone inhibits water percolation throughout the specimens, so their deterioration against salt crystallization is negligible. But in case of the freeze-thaw cycles, water uptake by clay minerals, which filled diagenesis fractures in the limestone, could be considered as the main factor for the observed deterioration during freezing-thawing. Also, effect of micro-cracks, caused by the thermal shock cycles, is the best explanation for reducing the mechanical properties of the stone.
机译:波斯波利斯(Persepolis)历史建筑群内有由石块建造的宫殿和陵墓。这些石头遭受各种风化。因此,在这项研究中,研究了波斯波利斯宝石的物理-机械性能,涉及一些重要的风化因素,包括冻融,热冲击和盐分结晶。这项研究的重点是石岩石学在抵抗风化因素方面的作用。岩石学研究表明,这块石头是一种无孔不渗透的生物碎屑堆积岩,成岩作用压力很大,并包含由粘土填充的裂缝。根据获得的结果,观察到的大多数石材变质与冻融循环有关。冻融循环导致石材机械性能的重大损失。在盐结晶和热冲击循环后也记录了类似的变化,尽管石材性能的变化并未达到冻融的程度。评估与老化测试周期相关的石材的衰变常数()和半衰期(N-1 / 2)的值表明,冻融和热冲击对石材耐久性的影响比盐结晶更严重。建议孔隙率是控制波斯波利斯石材耐久性的主要因素。石头的低渗透性抑制了整个样品的水渗透,因此它们对盐结晶的破坏可以忽略不计。但是,在冻融循环的情况下,粘土矿物中的水分吸收(填充了石灰岩中的成岩作用裂缝)可以被认为是冻融过程中观察到的劣化的主要因素。而且,由热冲击循环引起的微裂纹效应是降低石材机械性能的最好解释。

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