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- W2893773631 abstract "An ultra‐high‐strength austenitic‐martensitic stainless steel is produced by a novel quenching and partitioning (Q&P) process, provoking α ’‐martensite formation during a cooling step to cryogenic temperatures. The cooling temperature is varied in order to achieve three different material states with different α ’‐martensite volume fractions. Subsequently, all of the steels used are partitioned at 450 °C for 3 min to achieve thermal stabilization of remaining austenite and precipitation strengthening of martensite by M 3 C‐type carbides. The various states are characterized by tensile and total strain‐controlled fatigue tests (0.25% ≤ Δ ϵ t /2 ≤ 1.2%). Furthermore, the microstructure is investigated by scanning electron microscopy techniques. The state evident after quenching close to the Néel temperature during the Q&P process exhibits both the best quasi‐static and cyclic properties with respect to strength, ductility, and fatigue life. Similar to TRIP steel, the formation of fatigue‐induced α ’‐martensite via intermediate ϵ ‐martensite (i.e., γ → ϵ → α ') is observed and leads to cyclic hardening, the extent of which depends on the applied strain amplitude and the austenite stability of the respective material state." @default.
- W2893773631 created "2018-10-05" @default.
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- W2893773631 date "2018-09-26" @default.
- W2893773631 modified "2023-10-16" @default.
- W2893773631 title "Cyclic Deformation Behavior of an Ultra‐High Strength Austenitic‐Martensitic Steel Treated by Novel Q&P Processing" @default.
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- W2893773631 doi "https://doi.org/10.1002/adem.201800732" @default.
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