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Four samples of ceramics fragments belonging to the Museum of Limarí [20] were investigated; samples display black, white, red and brown colors (Fig. 3).
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The samples of oxide ceramics were cracked, and the resulting fresh surfaces were investigated in the vacuum chamber of the spectrometer.
Samples of polycrstalline sintered ceramics of Al2O3, MgAl2O4 and MgO were irradiated at room temperature with 85 MeV I7+ ions to doses up to 1.2×1019 m2.
In this work, the composition of bodies and glazes of more than fifty samples of blue-decorated ceramics from Aragon was determined by ICPAES and EDX Scanning Electron Microscopy (SEM).
Thirty samples of three different types of ceramics (Vita Omega®, Vita Alpha®, and Procera AllTitan®) were manufactured and used.
Furthermore, two samples of low density cellular ceramics were also prepared by infiltration of polymer foams with a ceramic slurry.
These examined samples of temperature and humidity-sensitive ceramics with best microstructural and electrical properties have been used as base materials for the preparation of thick-film structures.
Direct tensile testing of ceramics was achieved by optimizing the sample dimensions and by identifying the proper gripping method.
Previously studied and selected samples of Cu0.1Ni0.1Co1.6Mn1.2O4, Cu0.1Ni0.8Co0.2Mn1.9O4, and MgAl2O4 spinel ceramics with optimal structural properties [11 18] were used for the preparation of temperature- and humidity-sensitive thick-film layers.
Modifying the composition of ceramics with the burned mullite wool waste, the density of samples decreased, but the parameters of water absorption and compressive strength increased.
The advantages and disadvantages of optical vs. scanning electron microscopy techniques are discussed, and the observational power and limitations of the technique are illustrated for a range of different samples: metals, glasses, ceramics, and coatings.
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