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2026

2026-08-03 23:03  

1. Chang, H. Q., Liu, P. X., Lu, H., Wang, H. B., Liu, X. M., Hou, C., Hu, Q., Wang, Y. L., Song, X. Y.*: “Discovery of intrinsically high-hardness high-entropy carbides”, Acta Mater., 2026, 309, 122135.

2. Zhou, B., Lu, H.*, Wang, H. B., Liu, X. M., Fu, X. Y., Song, X. Y.*, Nie, Z. R.: “How nitrogen evolution affects mechanical properties of cemented carbides”, Acta Mater., 2026, 303, 121723.

3. Zarinejad, M.,#*, Wang, H. B.#*, Yang, E. Q., Tong, Y. Xu, Y. L., Song X. Y.*: “Additive   manufacturing of cemented carbides: Differences between beam-based and sinter-based technologies”, Int. Mater. Rev., 2026, 71(3), 199–227.

4. Wen L., Zhao Z.*, Li Y., Wang Y. R., Han J. R., Qiu C., Yao H., Guo R. H.*, Li K., Song X. Y.*: “Converting low-quality construction waste into tough pavement material via biomimetic mineralization”, Chem. Eng. J., 2026, 536, 175993.

5. Xiang, R., Lu, H.*, Wang, H. B., Liu, X. M., Song, X. Y.*: “Developing high-hardness cemented carbides by data-driven integration of composition and processing design”, J. Mater. Sci. Technol., 2027, 283, 103–113.

6. Wang, Y. L., Chang, H. Q.*, Lu, H., Liu, X. M., Wang, H. B., Hu, Q., Song, X. Y.*: “Compositional design for toughening of (ZrVNbTa)C-based high-entropy carbide ceramics”, J. Mater. Sci. Technol., 2027, 282, 93–102.

7. Wei, X. N., Hou, C.*, Han, T. L., Li, Y. R., Lu, H., Liu, K. L., Song, X. Y.*: “Enhancing tensile strength and oxidation resistance simultaneously for W-Cu composite by versatile Cr”, J. Mater. Sci. Technol., 2026, 243, 15-27.

8. Chang, H. Q.*, Lu, H., Wang, H. B., Liu, X. M., Hou, C., Hu, Q., Wang, Y. L., Song, X. Y.*: "Hardness-strength-toughness synergy of (NbMoTaW)C through TiC-TiO2 dual-phase engineering", J. Mater. Sci. Technol., 2026, 255, 96-107.

9. Li, Q. J., Wang, Y. L., Hou, C.*, Han, T. L., Li, Y. R., Wang, H. B., Song, X. Y.*: "Additively manufactured immiscible W-Cu composite with modulated phase structure and interfacial diffusion", Mater. Sci. Eng. A, 2026, 974, 150811.

10. Xu, G. J., Lu, H.*, Liu, P. X., Cheng, F., Han, C. Y., Song, X. Y.*: “Interpretable machine learning predicting coercivity of Sm‐Co‐based alloys”, Mater. Genome Eng. Adv., 2026, 4, e70053.

11. Wang, Y. J., Han, T. L.*, Hou, C., Liu, X. M., Li, Y. R., Song, X. Y.*: “Scalable synthesis of nanostructured W-Cu composites featuring ultrahigh hardness”, J. Alloy Compd., 2026, 1052, 186091.

12. Jiang Y, Wang, H. B.*, Hong H. H., Zhu H. B.*, Liu X. M., Lu H., Song X. Y.*: “Multiscale carbides and W-rich nanophases in laser-cladded WC-12Co coatings and enhanced wear resistance”, Int. J. Refract. Met. Hard Mater., 2026, 139, 107845.

13. Ren, T. T., Liu, X. M.*, Wang, H. B., Lu, H., Song, X. Y.*: “Enhancement of strength and toughness of ultra-coarse cemented carbide by incorporating (Zr,W)Cx particles in WC grains”, Int. J. Refract. Met. Hard Mater., 2026, 139, 107839.

14. Zhou, B., Lu, H.*, Wang, H. B., Liu, X. M., Song, X. Y.*: “Performance and wear mechanisms of WC-6Co milling tool in aluminum alloy machining”, Int. J. Refract. Met. Hard Mater., 2026, 140, 107877.

15. Xiang, R., Wang, H. B.*, Fu, L. Y., Liao, J. P., Zeng, R. L., Lu, H., Liu, X. M., Song, X. Y.*: “Machine learning-based service life prediction of cemented carbide micro-drills”, Int. J. Refract. Met. Hard Mater., 2026, 135, 107569.

16. Luo, L., Lu, H.*, Liu, X. M., Wang, H. B., Song, X. Y.*: "Effects of solute elements on mechanical features of WC and Co phases in cemented carbides: High-throughput calculations", Int. J. Refract. Met. Hard Mater., 2026, 134, 107458.

17. Shang, H. J., Wang, H. B.*, Lu, H., Liu, X. M., Jia, B. R., Song, X. Y.*: "Synergistic carbon correction and process optimization for enhancing mechanical properties of ultrafine WC-Co rods", Int. J. Refract. Met. Hard Mater., 2026, 134, 107501.

18. 吕皓*,许国婧,刘培鑫,韩崇宇,郭 凯,刘 东,宋晓艳*: “数据驱动的Sm-Co 基稀土永磁合金研究进展硅酸盐学报2026, 54(1), 49-69.


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