Abstract
Based on the microstructural evolution in Mn-based maraging steels aged at 460–540 °C, the formation mechanism of reverted austenite is proposed. Reverted austenite formed at grain boundaries at the onset of aging. During further aging, the accumulated Mn enrichment at newly formed α ′ / γ interfaces led to thin austenite layers growing into lath-like austenite grains. The lateral growth of lath-like reverted austenite was sluggish, reflecting the low diffusivity of Mn. We show that reverted austenite formed by a shear-dominated mechanism assisted by a small amount of Mn diffusion, whereas the nucleation of reverted austenite within martensite laths was kinetically slower.
Cite
CITATION STYLE
Qian, F., & Rainforth, W. M. (2019). The formation mechanism of reverted austenite in Mn-based maraging steels. Journal of Materials Science, 54(8), 6624–6631. https://doi.org/10.1007/s10853-019-03319-9
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