论文著作:
[1] Danyang Lin, Xin Xi, Rui Ma, Zhifeng Shi, Huiliang Wei, Xiaoguo Song*, Shengpeng Hu, Caiwang Tan, Fabrication of a strong and ductile FeCoCrNiMo0.3 high-entropy alloy with a micro-nano precipitate framework via laser powder bed fusion, Composites Part B: Engineering, 266 (2023) 111006 (复合材料顶刊、中科院一区TOP, IF 13.1、ESI 高被引论文)
校区新闻链接:http://news.hitwh.edu.cn/2023/0921/c1040a173344/page.htm
材料学网链接:https://mp.weixin.qq.com/s/VJDjDgNjJT72Te015jJ2EA
[2] Danyang Lin, Lianyong Xu, et al. Effects of annealing on the structure and properties of FeCoCrNi alloy fabricated by selective laser melting. Additive Manufacturing, 2020, 32, 101058.(增材顶刊、中科院一区TOP, IF 10.998(被引200余次、ESI 高被引论文))
材料学网新闻链接:https://mp.weixin.qq.com/s/HaBBXSd7JdWtsv843vfsQA
[3]Danyang Lin, Jixu Hu, et al. Enhancing plasticity in laser additive manufactured high-entropy alloys: The combined effect of thermal cycle induced dissolution and twinning[J]. Additive Manufacturing. 2024, 93: 104427.(增材顶刊、中科院一区TOP, IF 10.998)
[4] X. Xi, D. Lin*, X. Song, H. Wei, M. Yan, W. Luo, B. Chen, C. Tan, Z. Dong, F. Minami,In-situ remelting induced healing of cracks and strength-ductility synergy in additively manufactured Haynes 230 alloy, Addit. Manuf. 98 (2025) 104638.(增材顶刊、中科院一区TOP, IF 10.998)
[5] Danyang Lin, Jixu Hu, et al. Multiscale plastic deformation in additively manufactured FeCoCrNiMo high-entropy alloys to achieve strength–ductility synergy at elevated temperatures[J]. International Journal of Plasticity. 2024, 183: 104142.(工程技术顶刊、中科院一区TOP, IF 9.4)
[6] X. Xi, D. Lin*, Z. He, et al.Additively manufactured crack-free nickel-based superalloy with synergistic strength and plasticity via grain refinement and striped oxides inhibition, Composites Part B: Engineering 291 (2025) 112038.(复合材料顶刊、中科院一区TOP, IF 12.7)
[7] Chen W, Zhang J, Wang D, Lin D*,et al. Superior mechanical properties of additively manufactured FV520B matrix composites by microstructure tailoring[J]. Additive manufacturing. 2024, 88: 104259.
[8] Danyang Lin, Lianyong Xu, et al. A Si-containing FeCoCrNi high-entropy alloy with high strength and ductility synthesized in situ via selective laser melting. Additive Manufacturing, 2020, 35, 101340. (增材顶刊、中科院一区TOP, IF 10.998)
[9] Danyang Lin, Lianyong Xu, et al. A strong, ductile, high-entropy FeCoCrNi alloy with fine grains fabricated via additive manufacturing and a single cold deformation and annealing cycle. Additive Manufacturing, 2020, 36, 101591.(增材顶刊、中科院一区TOP, IF 10.998)
[10] Jinhong Liu , Zihan Li , Danyang Lin* , Zhengxin Tang , Xiaoguo Song , Peng He , Shuye Zhang , Hong Bian , Wei Fu , Yanyu Song.Eutectic high-entropy alloys and their applications in materials processing engineering: A Review. Journal of Materials Science & Technology (2024)(材料顶刊、中科院一区TOP, IF 10.9, ESI 高被引论文、热点论文)
[11] Li R, Ju G, Zhao X, Lin D*, et al.Simulation of residual stress and distortion evolution in dual-robot collaborative wire-arc additive manufactured Al-Cu alloys[J]. Virtual and physical prototyping. 2024, 19(1).(中科院一区TOP, IF 10.2、热点论文)
[12] Xin Xi, Danyang Lin*, Xiaoguo Song, Xingshun Luo, Rui Ma, Zhifeng Shi , Hong Bian Wei Fu, Zhibo Dong, Caiwang Tan, Strength-plasticity transition mechanism after the solution treatment of GH3230 superalloy fabricated via laser powder bed fusion, Materials Science & Engineering A, 876 (2023) 145124. (一区TOP, ESI 高被引论文)