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The analysis of the influence of thermal treatments on the martensitic transformation behavior allows optimize a treatment useful for all the alloys transforming between 200 K and 400 K, avoiding both stabilization and precipitation.
They reveal complex phase transformation behavior.
Phase transformation behavior was studied by differential scanning calorimetry (DSC).
A thermodynamic description is proposed elucidating the observed transformation behavior.
Figure 2 shows the α-to-γ transformation behavior of a specimen during heating.
The effect of alloying elements on the transformation behavior of austenite is discussed.
The transformation behavior of TRIP-steels is strongly dependent on temperature.
Therefore low temperature compression tests were carried out to evaluate their phase transformation behavior indirectly.
The deformation-induced phase transformation behavior was measured by in situ X-ray diffraction.
Phase transformation behavior during heating from room temperature to 1173 K was quantified by measuring thermal expansion using a dilatometer.
Particle arrangement and packing also influence the thermal stability and phase transformation behavior of TiO2 nanoparticles [13].
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