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◆ Materials (Basel, Switzerland)2026-08-25

Hydrogen Embrittlement Resistance of an Austempered Martensite/Bainite Dual-Phase Steel.

Fengping Zhao, Zhilin Guo, Zhaojing Zeng, Xiaofei Guo

原始摘要(英文原文)· Original abstract
Hydrogen embrittlement (HE) behavior of 31CrMoNiNbV steel subjected to austempering below the Ms temperature was investigated. The material exhibited a martensitic/bainitic dual-phase microstructure, with uniformly dispersed V- and Nb-rich MC carbides as well as Cr-rich M3C carbides precipitated in the matrix. It achieved an ultimate tensile strength of 1688 MPa and an elongation to fracture of 10.7%. Slow strain rate tensile tests revealed that the HE susceptibility index reached 13.5%. Thermal desorption spectroscopy and hydrogen permeation tests showed that the martensite/bainite phase boundaries and the dispersed MC/M3C carbides acted as effective hydrogen-trapping sites, lowering the hydrogen diffusivity and alleviating local hydrogen accumulation in stress-concentrated regions. Microstructural analysis further indicated that the dual-phase structure may simultaneously mitigate the hydrogen-enhanced localized plasticity and hydrogen-enhanced decohesion mechanisms, through combined stress relaxation at martensite/bainite interfaces and hydrogen immobilization by carbide traps.
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Hydrogen Embrittlement Resistance of an Austempered Martensite/Bainite Dual-Phase Steel. — 科研速览 Science Skim