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Serial Number Nero 711 10

Serial Number Nero 711 10





             

Serial Number Nero 711 10


This section presents the laboratory bench work performed on Nero temple building. The laboratory bench work was conducted based on the results of the chemical analysis of the Nero temple. The laboratory bench work was conducted by following the DIN precision (ISO 9001) standards. Additionally, the samples were cleaned and sliced and the bench work was started on the samples. The samples were cut and then the following procedures were carried out for analysis:

In Roman times, the major strategy of the city was to construct buildings that reinforced the walls; therefore, construction of various types of structures was well developed. An example of such types of structures are the walls that surrounds the city of Rome with a length of about 7.2 km, and this perimeter has a thickness of 19.5 m. This enormous perimeter wall is comprised of 9 rows of towers of approximately 10 m in height. All the towers are conformed by large blocks of stone with a width of 120 cm (1.5 m). It has been determined that most parts of the wall have suffered from corrosion. A 24-year monitoring study was conducted in 2002 and 2003. It was observed that there was no variation in the height of towers and wall. However, the walls had shown a reduction in the weight of about 20.4% over the period. Scientists have determined that the reduction in the wall was because of corrosion. In addition to the city walls, many public buildings, such as the Temple of Minerva, the temples of Quirinus, and Salacia, have also suffered from corrosion. As of today, very few buildings have been found in an intact condition; however, in order to have a picture of the appearance of the building materials before or after the works on the theater, a study was made of the architecture and the building materials of the theater of Marcellus (2nd century B.C.). A previous study of this structure led to the discovery of very old building materials and construction techniques. It was discovered that the building materials in question were in an extremely poor condition. The building materials of the wall were in a good condition, but the materials within the building were extremely deteriorated. Analysis of the mortar in the columns, blocks, and blocks interior bricked mortars were carried out. Figure 1 shows the composition of the mortar, and in addition to the cementitious material, this mortar contains other components such as sub-microparticles of lime, burnt lime, various types of artificial aggregate, sandy aggregate, quartz sand, crushed marble, and other natural materials (Fig. 1). Therefore, an investigation of the building materials using the same methods was carried out in the under the oxygen and steam condition. It was determined that the mortar in the building materials of Nero temple is made up of cement, crushed marble, bricks (red tile), crushed stone, lime, and other materials.




Polarizing optical microscopy is a relatively fast and cheap technique for the qualitative and quantitative analysis of materials. The technique of POM is based on the ability of the materials to present reflections of light polarized in opposite directions, which show specular reflections. This characteristic allows the observation of materials with different optical properties (different colors) and thus the characterization of samples. Two important parameters that can be measured with POM are the optical density (OD), which is a measure of the amount of light reflected by the sample, and the refractive index, which is a measure of the speed at which the light is reflected (or refracted) by the sample. Specimens can be immersed in water to increase their OD value, and the speed of light can be decreased by using a liquid with lower speed of light (increasing the refractive index). Polarizing optical microscopy is a powerful technique and it has become a standard for the characterization of archaeological and archeological materials. You can see in Fig. 2 three-dimensional and top view of a result using POM for one of the six selected Neros Temple samples and the measurement is described in Fig. 2 A. The first technique is that samples were dipped in water up to 90% to assess their OD values. Thereafter, the samples were dried. The second technique is that samples were also dipped in glycerol water solution with light viscosity in order to decrease their OD values. The third technique is the immersion of samples in one of the three studied liquids (water, glycerol, and glycerol with light viscosity) to assess their refractive index. Calculation of the refractive index values allows the classification of the materials according to their mixtures (water, glycerol, and glycerol with light viscosity). 5ec8ef588b


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