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The kinetics of continuous cooling transformation are successfully modelled.
Then, its continuous cooling transformation (CCT) diagram was determined with Gleeble-3500 thermo-mechanical simulator.
This includes the generation of continuous cooling transformation diagrams as well as time temperature transformation diagrams.
The Continuous Cooling Transformation diagrams were established, aiming to bridge the gap between slag properties and practical operations.
The steels were subjected to the thermomechanical processing designed on the basis of the DCCT diagram (deformation – continuous cooling transformation).
On this basis, a general rate equation for non-isothermal (isochronal heating and cooling) transformation is derived.
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The model is composed of four different transformation strain formulae for ferrite, pearlite, bainite and martensite transformations, respectively, and can be applied to continuous cooling transformations as well as isothermal ones.
Rapid heating and cooling phase transformation models are firstly proposed based on phase transformation dynamics.
Although the triple-stage transformation appeared in the Ti 50.6 and 51 at.% Ni alloys during cooling, the transformation sequence of the two alloys was completely different.
Calculation of cooling and transformation stresses of the materials qualitatively confirms the measured toughness values.
Make your heroes have cool transformation call and morpher.
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