During nanoscratch of 316H steel, hydrostatic compression suppresses the dilatational α′ path and favors γ→ε, while shear and relief of constraint convert ε to α′ or drive direct γ→α′ in pile-up.
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Spatially resolved in-situ characterisation of competing martensitic transformation pathways during nanoscratch in 316H Stainless Steel
During nanoscratch of 316H steel, hydrostatic compression suppresses the dilatational α′ path and favors γ→ε, while shear and relief of constraint convert ε to α′ or drive direct γ→α′ in pile-up.