近期发表论文:
(1)J.Y. Pang,H.W. Zhang*,L. Zhang,Z.W. Zhu,H.M. Fu,H. Li,A.M. Wang,Z.K. Li,H.F. Zhang,Simultaneous enhancement of strength and ductility of body-centered cubic TiZrNb multi-principal element alloys via boron-doping,Journal of Materials Science & Technology 78 (2020)
(2)J.Y. Pang,H.W. Zhang*,L. Zhang,Z.W. Zhu,H.M. Fu,H. Li,A.M. Wang,Z.K. Li,H.F. Zhang,A ductile Nb40Ti25Al15V10Ta5Hf3W2 refractory high entropy alloy with high specific strength for high-temperature applications,Materials Science and Engineering: A 831 (2022) 142290.
(3)J.Y. Pang,B.X. Wei,H.W. Zhang,et al. Improvement in corrosion resistance of biocompatible Ti1.5Al0.3ZrNb refractory high entropy alloy in simulated body fluid by nanosecond laser shock processing,Corrosion. Science. 224 (2023) 111484.
(4)J.Y. Pang,H.W. Zhang,Y. Ji,et al. High-temperature structural and mechanical stability of refractory high-entropy alloy Nb40Ti25Al15V10Ta5Hf3W2,Materials Characterization 205 (2023) 113321.
(5)Y.T. Wang,J.Y. Pang*,Y.T. Yang,et al. Overcoming intermediate-temperature brittleness via regulating trimodal γʹ structure in a novel multi-principal element alloy,Materials Science and Engineering: A 892 (2024) 146099.
(6)Z.L. Li, J.Y. Pang*,H.B. Liu,et al. Combined effect of silicon doping and thermal treatment on microstructures and mechanical properties of Ti50Nb20V20Al10 refractory high-entropy alloy,Journal of Alloys and Compounds. 1005 (2024) 176075.