Martensitic Transformation Mechanism In Situ Observation for the Simulated Coarse-Grained Heat-Affected Zone of DP1180 Steel. [PDF]
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Effect of Pretreatment on the Corrosion Behavior of AHSS CP 780 Analyzed by Electrochemical Techniques. [PDF]
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Evolution of Cluster Morphology and Its Impact on Dislocation Behavior in a Strip-Cast HSLA Steel. [PDF]
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High performance plain carbon steels obtained through 3D-printing. [PDF]
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Achieving 1.7 GPa Considerable Ductility High-Strength Low-Alloy Steel Using Hot-Rolling and Tempering Processes. [PDF]
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Impact of arc quenching parameters on surface hardness and microstructure of S45C steel with concave surfaces. [PDF]
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The bainite transformation: unresolved issues
Materials Science & Engineering A: Structural Materials: Properties, Microstructure and Processing, 1999Abstract A great deal of research, over many decades since the discovery of bainite, has revealed substantial information about the mechanism of the bainite transformation in steels. Elements of the theory are now routinely being used in many parts of the world in the design of novel alloys and in the interpretation of a variety of experimental data.
H K D H Bhadeshia
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Kinetics of the bainite transformation
Proceedings of the Royal Society A: Mathematical, Physical and Engineering Sciences, 2004Summary: A theory is developed for the evolution of bainite as a function of time, temperature, chemical composition and austenite grain size. The model takes into account the details of the mechanism of transformation, including the fact that nucleation begins at the austenite grain surfaces, and that the growth of a sheaf occurs by the repeated ...
Harshad K D H Bhadeshia
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The mechanism of bainite transformation
Journal de Physique IV (Proceedings), 2003Ultra-fine structures of bainite and its surface relief, and carbide nucleation inside austenite at the interface of ferrite/austenite are studied in this paper. The sympathetic nucleation and ledgewise growth theory is applied to explain the experimental results.
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