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The results showed that the expansion behavior of MgO expansive agent was closely related to its reactivity value and the temperature history of concrete.
Dilatometry is used to determine the thermal expansion behavior.
An investigation of the thermal expansion behavior of ceramic fibrous monoliths (FMs) is presented.
A simple analysis of thermal strain of this material supports the observed thermal expansion behavior.
The contact state of reinforced particles significantly influences the thermal expansion behavior.
Also, the expansion behavior of different material systems with respect to fiber content was determined numerically.
Linear thermal expansion behavior was examined using a thermomechanical analyzer (TMA).
Oriented LCERs exhibit anisotropic thermal expansion behavior and significant improvements of thermomechanical properties.
The thermal expansion behavior of seven Tribomet™ MCrAlY coatings was determined, using the PST Sapphire Dilatometer.
Next, the thermal expansion behavior is examined with existing residual stresses.
The effects of voids on the thermal expansion behavior are analyzed further.
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