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While, the thermal conductivity of the Sn Al2O3 samples was lower than that of the non-anodized Al because Al2O3 film on the surface presents the same as an insulator and imperfections in the atomic structure as ceramic behavior.
The targets show ceramic behavior like low electrical and thermal conductivity as well as high brittleness, which is probably due to the developed quasicrystalline phase.
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For the considered laminate, the matrix (resin and ceramic inclusion) behavior is unknown and difficult to measure.
The relationship between the media, mechanical properties and microstructure of each ceramic and cavitation behavior is discussed.
As mean binder free path increases, predominance of static over cyclic failure modes diminishes and a transition from a ceramic-like FCG behavior to a metallic-like one occurs (conversely in relation to contiguity).
A significant increase in convection heat transfer is required, beyond the normal behavior of ceramic foams.
Many practically important ceramic materials show inelastic behavior well beyond the elastic limit.
An investigation of the thermal expansion behavior of ceramic fibrous monoliths (FMs) is presented.
In recent years, numerous studies have been conducted on the crack-healing behavior of ceramic materials.
The application of the heating microscope technique for studying the shrinkage behavior of ceramic and glass powder compacts during sintering has been reported by Boccaccini and Trusty [14].
Oxidation behavior of ceramic matrix composites dispersed with metallic particles is discussed to establish materials design for high-temperature applications.
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