导师队伍

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张宏伟

  • 电话: 18624092397
  • 邮箱: hongweizhang@imr.ac.cn
  • 所属部门: 前沿材料研究部

承担科研项目情况

主持国家部委重大专项、国家自然科学基金重点基金、军科委技术领域基金和国家重点研发计划课题等科研项目30余项;共发表SCI论文120余篇,近五年以第一/通讯作者在Adv. Sci.、Acta Mater.、J. Mater. Sci. Technol.、Corros. Sci.等期刊发表论文40余篇;申请/授权中国专利165/119项,申请/授权国际专利6/2项,授权软著14项,参与制定团体标准2项,获军队科学技术进步一等奖、中国产学研创新成果奖一等奖、辽宁省技术发明一等奖、辽宁省科技进步一等奖、黑龙江省自然科学一等奖和辽宁省自然科学二等奖各1项。兼任Corros. Commun.编委、金属学报青年编委、中国有色金属学会金属基复合材料学会委员、中国机械工程学会再制造分会委员、中国材料研究学会增材制造分会委员、辽宁省机械工程学会增材制造分会副理事长、辽宁省腐蚀与防护学会理事等学术职务。

研究方向

1、高熵、非晶合金及其复合材料的设计与可控制备

2、高端装备关键部件先进修复技术开发

3、高性能金属结构件的服役可靠性评价

代表论著

1. Y. T. Yang, J. Y. Pang, H. W. Zhang*, J. J. Shen, Z. Q. Xing, Y. Sun, A. M. Wang, J. P. Oliveira, W. Wang, Z. B. Jiao*, Ultrahigh strength and exceptional work hardening in a hierarchical-structured alloy via hetero-interface-mediated twinning. Advanced Science, 2025.

2. Z. Q. Zhang, J. Y. Pang*, Y. C. Li, Y. T. Yang, Z. Q. Xing, A. M. Wang, Q. Wang*, H. W. Zhang*, Synergistic enhancement of the strength and ductility of high-entropy alloy at high temperatures via multiple heterogeneous microstructure modulation. Science China Materials, 2025.

3. J. Y. Pang, Y. T. Yang, C. J. Chen, L. Zhang, A. M. Wang, S. J. Zheng, Q. Wang, H. W. Zhang*, Enhancing the strength, ductility and strain hardening of B2-strengthened refractory multi-principal-element alloys by suppressing dislocation glide channels. Materials Research Letters, 2025.

4. Y. C. Li, J. Y. Pang, Z. Li, Q. Wang*, Z. H. Wang, J. L. Li, H. W. Zhang*, Z. B. Jiao, C. Dong, P. K. Liaw, Developing novel low-density high-entropy superalloys with high strength and superior creep resistance guided by automated machine learning. Acta Materialia, 2025.

5. Z. Q. Xing, J. Y. Pang*, K. J. Yuan, G. J. Zhu, J. B. Tan*, A. M. Wang, X. Q. Wu, H. W. Zhang*, Effects of the B2 phase on the corrosion behavior of Fe-Ni-Cr-Al medium-entropy alloys in lead-bismuth eutectic. Journal of Alloys and Compounds, 2025.

6.W. Li, W. Wang*, M. C. Niu, K. Yang, J. H. Luan, H. W. Zhang*, Z. B. Jiao*, Unraveling the two-stage precipitation mechanism in an fcc/L21 hierarchical structured high entropy alloy: Experiments and analytical modeling. Acta Materialia, 2024.

7. G. J. Zhu, J. B. Tan*, Z. Q. Xing, J. Y. Pang, X. Q. Wu, H. W. Zhang*, Z. Y. Zhang, X. Wang, Effect of Ti addition on corrosion behaviors of Fe-Ni-Cr-Al high entropy alloys exposed to static lead-bismuth eutectic at 550 . Corrosion Science, 2024.

8.Y. T. Wang, J. Y. Pang*, H. W. Zhang*, Y. T. Yang, Z. Q. Zhang, Y. Ji, Z. W. Zhu, L. Zhang, A. M. Wang, G. F. Ma, H. F. Zhang, Overcoming intermediate-temperature brittleness via regulating trimodal γʹ structure in a novel multi-principal element alloy. Materials Science and Engineering A, 2024.

9.J. Y. Pang, B. X. Wei, H. W. Zhang*, Y. Ji, Z. W. Zhu, L. Zhang, H. M. Fu, H. Li, A. M. Wang, H. F. Zhang, Improvement in corrosion resistance of biocompatible Ti1.5Al0.3ZrNb refractory high entropy alloy in simulated body fluid by nanosecond laser shock processing. Corrosion Science, 2023.

10.J. Y. Pang, H. W. Zhang*, Y. Ji, Z. W. Zhu, L. Zhang, H. Li, A. M. Wang, H. F. Zhang, High-temperature structural and mechanical stability of refractory high-entropy alloy Nb40Ti25Al15V10Ta5Hf3W2. Materials Characterization, 2023.