
张航
电子邮箱:
所在单位:机械工程学院
学历:博士研究生毕业
办公地点:
性别:男
联系方式:
学位:博士
职称:教授
博士生导师:是
硕士生导师:是
- . Hang Zhang, Xiaoyu Sun, Xuebo Xu, et al. . Numerical simulation of surface structures in single and multi-track laser polishing of Ni–P alloy , Journal of Manufacturing Processes(一区) , 2024 , 132
- . 李涤尘、张航、蔡江龙 . 难熔高熵合金激光增材制造的发展:材料性能与制造工艺调控技术 , 中国激光(领军期刊) , 2024
- . Jianglong Cai, Hang Zhang, Lin Wang, Xiaoyu Sun, Xuebo Xu, Xin Guo, Dichen Li . Design and coherent strengthening of ultra-high strength refractory high entropy alloys based on laser additive manufacturing , Materials Science and Engineering A(一区) , 2023 , 886
- . Yizhen Zhao, Hang Zhang, Jianglong Cai, Xiaoyu Sun, Lin Wang, Xuebo Xu, Xin Guo , Zhiqiang Tong, Dichen Li . An efficient micro-holes suppression process design method for high strength BCC high entropy alloys via powder bed fusion , Journal of Manufacturing Processes(一区) , 2023 , 101 : 371-385
- . Hang Zhang, Jianglong Cai, Jiale Geng, et al. . Development of high strength high plasticity refractory high entropy alloy based on Mo element optimization and advanced forming process , International Journal of Refractory Metals and Hard Materials(一区) , 2023
- . Hang Zhang; Jianglong Cai; Jiale Geng; et al. . Study on annealing treatment of NbMoTaTiNi high-entropy alloy with ultra-high strength disordered-ordered transition structure for additive manufacturing , Journal of Alloys and Compunds , 2023
- . Yizhen Zhao, Hang Zhang*, Jianglong Cai, Shaokun Ji, Dichen Li . An efficient prediction model of effective thermal conductivity for metal powder bed in additive manufacturing , Chinese Journal of Mechanical Engineering , 2023
- . Hang Zhanga, Jiale Genga, Shuo Zhua, et al. . An effective method for large scale temperature simulation in SLM based on the finite difference , Numerical Heat Transfer, Part A: Applications , 2022
- . 赵懿臻, 张航, 蔡江龙, 孙啸宇, 耿佳乐, 王林, 许学博, 李涤尘 . 激光增材制造BCC基难熔高熵合金组织与性能研究 , 中国激光(领军期刊) , 2022 , 49(14) : 60
- . H Zhang,Z Chen,Y He,X Guo,D Li . High Performance NbMoTa–Al2O3 Multilayer Composite Structure Manufacturing by Laser Directed Energy Deposition , Materials , 2021 , 14(7) : 1685
