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Thermal expansion on volcanic tuff rocks used as building stones: examples from Mexico

机译:用作建筑石料的火山凝灰岩热膨胀:墨西哥的例子

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Three cities in the center of Mexico, declared as cultural heritage, were erected mainly of volcanic tuffs as main construction element. Many of the historic buildings of these cities show significant damage and deterioration. One of the causes of these damages can be attributed to a phenomenon poorly studied in volcanic tuffs, the thermal expansion. To understand the response of volcanic tuffs to thermal expansion, as well as to know their thermal expansion coefficient, thermal expansion test was performed on 12 representative tuffs of these localities. In the same way and to know which of their petrographic, petrophysical, mineralogical, and geochemical properties influence this phenomenon, several laboratory studies were carried out to determine which of these plays an important role in the expansion. The results of our tests showed that volcanic tuffs rocks have very varied thermal expansion values, ranging from 0.7 mm/m at their maximum expansion to even contraction in the order of -0.5 mm/m. Equally varied were the thermal expansion coefficient values ranging from 10.1 to -7.2 10(-6)/K. The most dominant behavior type is the "anisotropic no residual strain behavior". In general, the behavior of the tuffs in practically all the tests carried out showed a very important heterogeneity in the rocks; however, in spite of the non-homogeneous behavior of the tuffs, three main factors could be identified that play an important role in the thermal expansion of the studied rocks, the chemical composition, e.g., acid volcanic tuff rocks (rhyolitic composition) had greater expansions, while the more basic rocks (basaltic composition) expanded less, the textural and fabrics homogeneity, e.g., the most homogeneous rocks texturally have higher expansion values and the degree of crystallinity, and, e.g., the tuff rocks with the largest amount of glass showed smaller thermal expansions than the tuffs composed of microcrystals.
机译:墨西哥中部的三个城市被宣布为文化遗产,主要以火山凝灰岩为主要建筑元素。这些城市的许多历史建筑都显示出严重的破坏和恶化。这些破坏的原因之一可以归因于在火山凝灰岩中研究不足的现象,即热膨胀。为了了解火山凝灰岩对热膨胀的响应以及热膨胀系数,对这些地区的12个代表性凝灰岩进行了热膨胀试验。以相同的方式并了解它们的岩石学,岩石物理,矿物学和地球化学特性中的哪一个影响了这种现象,进行了一些实验室研究,以确定其中哪些在膨胀中起重要作用。我们的测试结果表明,火山凝灰岩的热膨胀值变化很大,从最大膨胀时的0.7 mm / m到-0.5 mm / m的均匀收缩。同样变化的是热膨胀系数值,范围从10.1到-7.2 10(-6)/ K。最主要的行为类型是“各向异性无残余应变行为”。通常,在几乎所有测试中凝灰岩的行为都显示出岩石中非常重要的异质性。然而,尽管凝灰岩具有不均匀的行为,但仍可确定三个主要因素在所研究岩石的热膨胀中起着重要作用,但化学成分,例如酸性火山凝灰岩(流纹岩成分)具有较大的影响。膨胀,而更基本的岩石(玄武岩成分)膨胀较小,但质地和织物的同质性,例如,质地最均匀的岩石具有较高的膨胀值和结晶度,例如凝灰岩中的玻璃含量最高表现出比由微晶组成的凝灰岩更小的热膨胀。

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