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The textures of the cold rolled specimen were characterized according to the 〈110〉 partial parallel to the rolling direction as the rolling reduction increased.
The thermal scratch significantly influences the surface quality of the cold rolled stainless steel strip.
Subsequent solutionizing of the cold rolled samples produced noticeable textural differences in type 304, but insignificant differences in type 316L.
The structure of the latter became strongly altered by welding to lead to phase compositions very close to those of the cold rolled and annealed specimens.
The single-crystal elastic constants of the cold rolled plus annealed Ti-39Nb alloy were extracted from its polycrystalline specimen by using an in-situ synchrotron X-ray technique.
Artificial neural network (ANN) models, correlating the mechanical properties (yield strength, tensile strength, %elongation and ¯r) of the cold rolled interstitial free (IF) steel sheets with compositional and processing parameters, are used to find the importance of different variables.
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Moreover, the inhibition effect of WSOAD on the cold rolled steel in 1.0 M HCl solution was studied by weight loss and potentiodynamic polarization measurements.
Furthermore, corrosive protection of the EPU coatings on the cold rolled steel (CRS) in 5 wt% NaCl solution were studied by tafel plots analysis and electrochemical impedance spectroscopy.
The activation volumes for the cold rolled Zr 1.5Nb P alloys were not much different from those of annealed Zr 1.5Nb P alloys despite the higher dislocation density in the cold rolled alloys.
A fundamental understanding of this will enable rapid and reliable process design for the cold roll forming of high strength titanium alloys.
The stored energy of the {111}〈112〉-γ fibre component of the 88% cold rolled UHP iron is about 3.6 times larger than that of the {001}〈110〉-α fibre component.
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