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Carbon nanotubes lower the transformation temperature of glassy carbon, possibly aiding manufacturers, MIT researchers report.
In particular, the transformation temperature between α-Sn and β-Sn can be increased with the incorporation of impurity.
The γ-αFe transformation temperature of the grade was determined using thermomechanical simulator.
Prestrainend shape memory alloys (SMA) change their length when heated above their transformation temperature.
In this process, the spring is heated uniformly below the material transformation temperature.
For instance, a very low concentration (~0.6 wt%) of Si in Sn shifts the transformation temperature from ~13 to ~90 °C3.
This should be attributed to the increase of martensitic transformation temperature under compression.
It is found that the martensitic transformation temperature of the alloy is near 261 K.
With a remarkable difference in transformation temperature, these two alloys show similar vibrational properties.
The microactuator heat treated at 973 K showed the highest transformation temperature with the lowest transformation temperature hysteresis, which is attractive for high speed actuation.
The martensitic transformation temperature decreases with increasing Ga concentration and bends two times when crossing the Curie temperature and the intermediate-phase transformation temperature.
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