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无机非金属材料与工程系

基本信息|Basic Information

  • 姓名:杜立飞
  • 学位:工学博士
  • 职称:副教授
  • 导师资格:硕士生导师
  • 所在系所:无机非金属材料与工程
  • 电子邮箱:dulifei@xust.edu.cn

综合介绍|General Introduction

杜立飞,男,博士,副教授,硕士生导师。2014年毕业于西北工业大学材料物理与化学专业,曾于2010-2012年在美国Pennsylvania State University进行国家建设高水平大学公派联合培养博士学习。自2007年至今一直从事材料相变过程的数值模拟、电磁功能材料设计研究工作,已发表相关学术论文60余篇。现任材料科学与工程学院副院长。

奖励荣誉|Award and Honor

西安科技大学优秀党务工作者

西安科技大学优秀共产党员

教育教学|Education and Teaching

主讲课程:《计算机在材料科学中的应用》、《材料科学进展(双语)》、《材料概论》等本科课程,《材料科学与工程专业外语》等研究生课程。

教学获奖:西安科技大学优秀教学成果一等奖;全国煤炭行业教育教学成果二等奖;陕西省金相技能大赛优秀指导教师。

科学研究|Scientific Research

一 研究领域

1.电磁吸收/屏蔽材料设计与开发

2.金属材料凝固微观组织演化过程的建模及数值模拟

3.多孔材料微结构调控及性能优化

4.动力电池热管理技术开发


二 科研项目

1.国家自然科学基金,《铝合金凝固过程中微观缺陷形成机制的数值模拟研究》,主持

2.陕西省自然科学基金,《Al-Li合金多尺度微观组织跨尺度关联模式研究》,主持

3.西安科技大学优秀青年基金,《高强铝合金多尺度组织遗传特性及耐腐蚀性能研究》,主持

4.国家自然科学基金,《基于多尺度模拟结构和力学性能设计低成本金属硬质化合物》,参与

5.国家自然科学基金,《基于多尺度计算的金属有机骨架材料的机械性能研究及其成型工艺开发》,参与

6.国家自然科学基金,《MexNy/Ag纳米多层膜的多循环宽温域连续润滑行为及自适应减摩机理》,参与

7.国家自然科学基金,《新型钙钛矿结构钛酸铋钠氧离子导体的电导调控与机理研究》,参与

8.国家自然科学基金,《近液相线等温处理和电磁场下高温合金熔体结构演化对凝固组织的影响》,参与


三 期刊论文

1.Lifei Du*, Jinshan Zhang, Qian Zhou, Yuekun Li, Yao Zhang, Xinlei Wang, Mengyao Zhang, Shuling Zhao, Jiong Wang, Xiaomeng Fan. Hierarchical CNTs/PyC/SiBCN foam with tunable microwave absorption properties conspired by melamine-derived pyrolyzed carbon and carbon nanotubes. Carbon, 2025, 234: 120030.

2.Lifei Du*, Yuekun Li, Qian Zhou, Tiantian Shi, Liangqing Zhang, Jiong Wang, Xinlei Wang, Xiaomeng Fan. A flexible metamaterial based on CNTs/Cellulose aerogels for broadband and ultra-lightweight microwave absorbers. Composites Science and Technology, 2025, 261: 111024.

3.Lifei Du*, Yuekun Li, Qian Zhou, Jinshan Zhang, Xinlei Wang, Yao Zhang, Wenjing Cui, Zhuoyuan Guo, Hongqi Duan, Chongbin Nan, Xiaomeng Fan. Facile preparation of GNS/PyC@SiBCN aerogels with heterogeneous interfaces for broadband and tunable electromagnetic wave absorption. Materials Today Nano, 2025, 29: 100571.

4.Lifei Du*, Yuekun Li, Qian Zhou*, Liangqing Zhang, Tiantian Shi, Xinlei Wang, Jinshang Zhang, Jing Zhao, Jiong Wang, Xiaomeng Fan*. Facilitative preparation of graphene/cellulose aerogels with tunable microwave absorption properties for ultra-lightweight applications. Journal of Colloid and Interface Science, 2025, 679: 987-994

5.Lifei Du*, Tiantian Shi, Qian Zhou, Yuekun Li, Haifeng Zhang, Siyi Dong, Lirong Deng, Jing Zhao, Xinsheng Li, Jiebing Wang, Chao Zou.A multi-layer square frustum metamaterial for ultra-broadband electromagnetic absorption based on carbonyl iron powder/carbon fiber composites. Journal of Alloys and Compounds, 2023, 950:169917.

6.师甜甜, 杜立飞*, 张海锋, 田闰博. 水基吸波超材料的研究进展. 材料导报, 2023, 37(18): 54-60.

7.Lifei Du*, Tiantian Shi, Siyi Dong, Xiangdong Wang, Min Zhou, Jing Zhao, Xiaoqing Huang. Ultra broadband microwave metamaterial absorber with multiple strong absorption peaks induced by sandwiched water resonator.Applied Physics A, 2022, 128:864.

8.Longgui Peng*, Pu Zhao, Huanquan Cheng, Qirui He, Lifei Du*. Improved low-frequency sound absorption of porous silicone rubber resonance sheet with periodic cavities. Published online, DOI: 10.1177/14613484211070356.

9.Lifei Du*, Runbo Tian, Tiantian Shi and Youqi Cao. Liquid phase stratification induced by large temperature gradient during spinodal decomposition in Fe-Cr alloys: A phase-field study. Modern Physics Letters B, 2021, 35(22): 2150374.

10.Chengmin Xie, He Zhao, Lifei Du*, Huiling Du, Pingping Wu*. Enhanced ferroelectricity for nanoporous barium titanate: a phase-field prediction. Philosophical Magazine Letters, 2021, 101(9): 341-352.

11.Longgui Peng*, Lei Lei, Yongqiang Liu, Lifei Du*. Mechanical and sound absorption performance of addition type liquid silicone rubber reinforced with halloysite nanotubes. Materials Research Express, 2021, 8(1): 015309.

12.Longgui Peng*, Lei Lei, Yongqiang Liu, Lifei Du*. Improved Mechanical and Sound Absorption Properties of Open Cell Silicone Rubber Foam with NaCl as the Pore-Forming Agent. Materials, 2021, 14(1): 195.

13.Limei Fu, Youqi Cao, Zhongtang Gao, Lihong Dong, Lifei Du*. Thermoelectric effects induced dendrite branching dynamics in pure substances: An insight from morphological theory. The European Physical Journal E, 2020, 43: 45.

14.Lifei Du*, Xian Du, Li Zhang, Qunli An, Wanli Ma, Hongpei Ran, Huiling Du. Effect of closed pores on dielectric properties of 0.8Na0.5Bi0.5TiO3-0.2K0.5Bi0.5TiO3 porous ceramics. Journal of the European Ceramic Society, 2018, 38(7): 2767-2773.

15.He Zhao, Pingping Wu, Lifei Du*, Huiling Du. Effect of the nanopore on ferroelectric domain structures and switching properties. Computational Materials Science, 2018, 148: 216-223.

16.Lifei Du*, Shaomei Yang, Xinwen Zhu, Jing Jiang, Qian Hui, Huiling Du. Pore deformation and grain boundary migration during sintering in porous materials: a phase-field approach. Journal of Materials Science, 2018, 53(13): 9567-9577.

17.Lifei Du*, Peng Zhang, Shaomei Yang, Jie Chen, Huiling Du. Effect of boundary heat flux on columnar formation in binary alloys: A phase-field study. Modern Physics Letter B, 2018, 32(6): 1850078.

18.Lifei Du*, Shaomei Yang, Peng Zhang, Huiling Du. Pinning effect of different shape second-phase particles on grain growth in polycrystalline: numerical and analytical investigations. Composite Interfaces, 2018, 25(4): 357-368.

19.Lifei Du*, Peng Zhang, Shaomei Yang, Zhongtang Gao, Jie Chen, Huiling Du. Phase-field simulation on dendritic to semi-circular morphology transition induced by forced liquid flow. Applied Physics A, 2018, 124(2): 211.

20.Lifei Du*, Youqi Cao, Zhongtang Gao, Huiling Du. Phase-field modelling and simulation of morphology transition induced by thermoelectric effects during solidification in pure metals. Materials Research Express, 5(9): 096501.

21.Lifei Du*, Peng Zhang, Lianli Wang, Huiling Du. Effect of different RE site ionic radii on the electronic structures and elastic properties of Ba2RENbO6: A first-principles study. International Journal of Modern Physics B, 2017, 31(23): 1750165.

22.Lifei Du*, Limin Zhang, Peng Zhang, Huiling Du. Effect of electric field on nucleation in undercooled melt. Materials Research Express, 2017, 4(7): 076502.

23.Lifei Du*, Peng Zhang, Jie Chen, Huiling Du. Effects of lateral constraints on the morphology evolution and solute diffusion during solidification in a binary alloy. Applied Physics A, 2017, 123(5): 311.

24.Lifei Du*, Peng Zhang, Lianli Wang, Bin Zheng, Huiling Du. Phase field simulation on the effect of micropore morphology on grain growth in porous ceramics. Computational Materials Science, 2017, 131: 196-201.

25.Lifei Du*, Huiling Du. Ab-initio study of structural, electronic and thermodynamic properties of Ba2YTaO6. International Journal of Modern Physics B, 2016, 30(24): 1650164.

26.Lifei Du*, Lianli Wang, Bin Zheng, Huiling Du. Numerical simulation of phase separation in Fe-Cr-Mo ternary alloys. Journal of Alloys and Compounds, 2016, 663: 243-248.

27.Lifei Du*, Lianli Wang, Bin Zheng, Huiling Du. Phase-field modeling of microstructure evolution during solidification in presence of gas bubble. Computational Materials Science, 2016, 114: 94-98.

28.Lifei Du*, Peng Zhang, Jie Chen, Huiling Du. Phase field modeling and simulation of columnar-equiaxed competition during solidification in polycrystalline alloys. Materials Review, 2016, 30(Z1): 107-112.

29.杜立飞*, 董国栋, 许建锋, 吴浩茹, 曹纯清, 陈旭东. 脉冲交流电作用下的合金凝固研究进展.特种铸造及有色合金, 2016, 36(10): 1043-1047.

30.杜立飞*, 杜娴. 电子材料综合实验的探索与实践. 实验技术与管理, 2017,34(7): 203-206.

31.Lifei Du, Rong Zhang. Effect of boundary heat flux on solidification in a forced liquid metal flow: a phase-field simulation. Philosophical Magazine, 2014, 94(36): 4157-4170.

32.Lifei Du*, Rong Zhang. Phase-Field Simulation of Concentration and Temperature Distribution During Dendritic Growth in a Forced Liquid Metal Flow. Metallurgical and Materials Transactions B, 2014, 45(6): 2504-2515.

33.Lifei Du*, Rong Zhang. Phase-field simulation of dendrite growth in the presence of lateral constraints. Progress in Natural Science: Materials International, 2014, 24(3): 291-294.

34.Lifei Du*, Rong Zhang, Limin Zhang. Phase-field simulation of dendritic growth in a forced liquid metal flow coupling with boundary heat flux. Science China Technological Sciences, 2013, 56(10): 2586-2593.

35.杜立飞*, 张蓉, 邢辉, 张利民, 张洋,刘林. 横向限制下凝固微观组织演化的相场法模拟. 物理学报, 2013, 62(10): 326-331.

36.Lifei Du*, Rong Zhang. Phase field simulation of dendrite growth with boundary heat flux. Integrating Materials and Manufacturing Innovation. 2014, 3(1): 18.

37.Lifei Du*, Rong Zhang, Limin Zhang, Lin Liu. Phase-field simulation of solidification microstructure evolution in the presence of lateral constraints. Proceeding of the 8th Pacific Rim International Congress on Advanced Materials and Processing (PRICM 8). 2013, 8: 2765-2772.

38.Lifei Du, Jinshan Zhang, Qian Zhou, Yuekun Li, Yao Zhang, Xinlei Wang, Mengyao Zhang, Shuling Zhao, Jiong Wang, Xiaomeng Fan. Hierarchical CNTs/PyC/SiBCN foam with tunable microwave absorption properties conspired by melamine-derived pyrolyzed carbon and carbon nanotubes. Carbon, 2025, 234: 120030.

39.Lifei Du, Yuekun Li, Qian Zhou, Tiantian Shi, Liangqing Zhang, Jiong Wang, Xinlei Wang, Xiaomeng Fan. A flexible metamaterial based on CNTs/Cellulose aerogels for broadband and ultra-lightweight microwave absorbers. Composites Science and Technology, 2025, 261: 111024.

40.Lifei Du, Yuekun Li, Qian Zhou, Jinshan Zhang, Xinlei Wang, Yao Zhang, Wenjing Cui, Zhuoyuan Guo, Hongqi Duan, Chongbin Nan, Xiaomeng Fan. Facile preparation of GNS/PyC@SiBCN aerogels with heterogeneous interfaces for broadband and tunable electromagnetic wave absorption. Materials Today Nano, 2025, 29: 100571.

41.Lifei Du, Yuekun Li, Qian Zhou, Liangqing Zhang, Tiantian Shi, Xinlei Wang, Jinshang Zhang, Jing Zhao, Jiong Wang, Xiaomeng Fan. Facilitative preparation of graphene/cellulose aerogels with tunable microwave absorption properties for ultra-lightweight applications. Journal of Colloid and Interface Science, 2025, 679: 987-994.

42.Lifei Du, Tiantian Shi, Qian Zhou, Yuekun Li, Haifeng Zhang, Siyi Dong, Lirong Deng, Jing Zhao, Xinsheng Li, Jiebing Wang, Chao Zou. A multi-layer square frustum metamaterial for ultra-broadband electromagnetic absorption based on carbonyl iron powder/carbon fiber composites. Journal of Alloys and Compounds, 2023, 950:169917.


四 授权专利

一种能复合多种电源的磁控溅射设备(专利号:ZL202322474578.8)