Xuejun Jin
Affiliations: | Materials Science and Engineering | Shanghai Jiao Tong University, Shanghai, Shanghai Shi, China |
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"Xuejun Jin"
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Publications
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Li Y, Li W, Wang B, et al. (2023) Transformable nanoprecipitates induced large ductility in a metastable cryogenic steel. Science Bulletin |
Zhou P, Yan Z, Wu Y, et al. (2020) Communication—The mechanism of hydrogen permeation resistance of Ni coating enhanced by the incorporation of graphene Ecs Journal of Solid State Science and Technology. 9: 93004 |
Jin M, Song Y, Wang X, et al. (2020) Ultrahigh damping capacity achieved by modulating R phase in Ti49.2Ni50.8 shape memory alloy wires Scripta Materialia. 183: 102-106 |
Li Y, Li W, Min N, et al. (2020) Mechanical response of a medium manganese steel with encapsulated austenite Scripta Materialia. 178: 211-217 |
Xiao F, Li Z, Chen H, et al. (2020) Martensitic transformation and elastocaloric effect of Ti–Ni–Cu–Al microwire Materialia. 9: 100547 |
Li Y, Li W, Xu C, et al. (2020) Investigation of hierarchical precipitation on bimodal-grained austenite and mechanical properties in quenching-partitioning-tempering steel Materials Science and Engineering: A. 781: 139207 |
Li Y, Li W, Min N, et al. (2020) Homogeneous elasto-plastic deformation and improved strain compatibility between austenite and ferrite in a co-precipitation hardened medium Mn steel with enhanced hydrogen embrittlement resistance International Journal of Plasticity. 133: 102805 |
Xu Y, Gong Y, Du H, et al. (2020) A newly-designed hot stamping plus non-isothermal Q&P process to improve mechanical properties of commercial QP980 steel International Journal of Lightweight Materials and Manufacture. 3: 26-35 |
Du H, Gong Y, Liang T, et al. (2020) Enhancement of Impact Toughness Via Tailoring Deformation Compatibility of Constituent Phases in Duplex Q&P Steel with Excellent Strength and Ductility Metallurgical and Materials Transactions A. 51: 2097-2117 |
Yang K, Ding W, Liu S, et al. (2020) Dominating Role of Film‐Like Carbon‐Enriched Austenite for the Simultaneous Improvement of Strength and Toughness in Low‐Carbon Steel Steel Research International. 2000344 |