块体纳米材料的力学行为研究团队-中国科学院金属研究所
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2025年发表论文
2025-04-09  |          【 】【打印】【关闭

【1】
Q.S. Pan, K.Q. Ding, S. Guo, N. Lu, N.R. Tao, T. Zhu*, L. Lu*.
Superior resistance to cyclic creep in a gradient structured steel.
Science, 388(2025)82-88.
Here is the free-access,  https://www.science.org/stoken/author-tokens/ST-2543/full    Full Text

【2】
L. Liu, Y. Liu, L.Y. Liu, Q.S. Pan*, L. Lu*.
Microstructure evolution in multi-principal element alloy with millimeter-sized grains subjected to cyclic torsion.
Acta Materialia, 287(2025)120766.    Full Text

【3】
Y.J. Kim, , Z. Cheng, G.H. Gu, L. Lu, H.S. Kim*.
Mechanical behavior of gradient nanotwinned Cu: A dislocation-based constitutive model incorporating gradient effects.
Materials Science & Engineering A, 925(2025)147805.    Full Text

【4】
J. Zheng, X.C. Chen, Z. Cheng*, L. Lu*.
Microstructure dependence of strength and elongation of electrodeposited Cu foils.
Journal of Alloys and Compounds, 1023(2025)180082.    Full Text

【5】
Q.S. Pan, L. Lu*.
Fatigue in metals and alloys.
Nature Materials, DOI: 10.1038/s41563-025-02308-5.    Full Text

【6】
S. Guo, Y.F. Wang, K.Q. Ding, T. Zhu, Q.S. Pan, L. Lu*.
Enhanced high-cycle fatigue resistance of gradient structured 304 stainless steel.
Acta Materialia, 298(2025), 121415.    Full Text

【7】
C. Liu, X.C. Chen, Z. Cheng*, L. Lu*.
The effect of 2-mercaptobenzimidazole concentration on the microstructure and mechanical properties of electrodeposited Cu foils.
Electochimica Acta, (2025), doi.org/10.1016/j.electacta.2025.146330.    Full Text

【8】
C. Liu, Z. Cheng, L.H. Liu, J. Zheng, X.C Chen, K.X. Song, L. Lu*.
Dependence of microstructure and mechanical properties of electrodeposited copper foils on electrochemical behavior of sodium saccharin.
Electrochimica Acta, (2025),doi.org/10.1016/j.electacta.2025.147431.    Full Text

【9】
L.H. Liu, C. Liu, J. Zheng, Z. Cheng*, L.Lu*.
Unit-level hardening-driven strengthening in gradient nanotwinned Cu.
Scripta Materialia 271 (2026) 116973.    Full Text

块体纳米材料的力学行为研究团队-中国科学院金属研究所

块体纳米材料的力学行为研究团队

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