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We demonstrated the absence of two stage transformation in bulk at high temperatures.
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It was directly verified that the martensitic phase transformation in the studied 304 SS has two stages, transformation first from γ to ε in the nanoscaled lamella, and then from ε to α′ in the microbands.
On the basis of a two stage-transformation assumption, a physically realistic analytical model for isothermal solid-state precipitation has been developed.
Multiple pillars with diameters between 10 μm and 200 nm were cut on a single crystalline bulk sample oriented along the [1 1 0] direction as the compression axis and that had undergone fully reversible two stage martensitic transformation, i.e. L21 austenite to 10M/14M modulated martensite and then to L1o martensite.
Using T1 images, the segmentation was performed with two stage affine transformation to standard space of MNI152 at 1 mm resolution.
As a function of transformation time, two stages of phase transformation can be clearly distinguished in the γ → α transformation of the interstitial Fe C alloy: a first, very fast stage and a second, sluggish one.
Such a change in the transformation pathway, i.e. from a two stage to one stage transformation, was also observed in bulk single crystals with increasing temperature.
Extensive validation studies will be necessary to shed light on the biological and clinical implications of the similarities and differences of the transcriptional program between these two stages of transformation.
The classical view is that this process occurs in two stages: (1) the transformation of the decidual segment of the spiral arteries by a "first wave" of endovascular trophoblast migration in the first trimester; and (2) the transformation of the myometrial segments of the spiral arteries in the second trimester by a "second wave" of trophoblast [ 54].
A cross-section under increasing bending moment undergoes three stages of transformation in its plastification process.
Thus, a conclusion is made that the combustion wave in the Ni/Al reactive multilayer nanofoil is proposed to be a sequential, two stage process involving chemical (first stage) and physical (second stage) exothermic transformations.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com