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Alloys were quenched from the melt to retain at room temperature a metastable β phase (B2 structure), which is stable at high temperatures.
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Its major contribution is in conjunction with chromium in austenitic stainless steels, in which nickel enables the austenitic structure to be retained at room temperature.
The fraction of t-ZrO2 up to 93% was retained at room temperature after sintering.
Almost constant, highly stable, ionic conductivity while maintaining mechanical integrity was retained at room temperature for more than one month.
Synchrotron XRD and Rietveld refinement showed that the ferroelectric orthorhombic phase was retained at room temperature, even for particles smaller than 50 nm.
As shown in Fig. 2a, a small amount of austenite (3%) is retained at room temperature when the steel is austempered at 325 and 350 °C, lower than the Ms. This is due to transformation of large amount of residual austenite into bainitic ferrite/martensite mixed matrix.
This material was retained at room temperature for 7 days with occasional shaking.
The volume fraction of retained austenite at room temperature was approximately 8%, which was measured easily by the software VC6.0++ programming.
Through a set of experiments on alloys with nominal composition Fe 0.32C 1.42Mn 1.56Si (wt.%), we monitored the evolution of the volume fraction of retained austenite at room temperature as a function of the IA and BIT temperatures.
Keep at room temperature.
In this study, the composition of HfNbTaTiZr is modified with an aim to improve its strength at high temperature, while retaining reasonable toughness at room temperature.
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