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Martensitic Transformations: Diffusionless Change

Explain how rapid coordinated atomic motion creates hard phases, shape change and transformation stresses.

Martensitic Transformations: Diffusionless Change

A different transformation mechanism

Martensitic transformation occurs through coordinated lattice distortion rather than long-range diffusion. It can therefore proceed rapidly at low temperature.

Start and finish temperatures

Transformation progresses over a temperature interval. Composition, prior austenite structure and stress shift the start and finish conditions.

Shape and internal stress

The transformation strain creates plates, laths or needles and generates substantial internal stress. Variants form to accommodate shape change.

Beyond steel

Martensitic mechanisms also underpin shape-memory alloys, transformation-toughened ceramics and selected titanium alloys.

Engineering takeaway

Treat martensite as a transformation product with morphology, carbon content and tempering response—not as a single hardness value.