个人简介
方虹泽,男,青年拔尖副教授,博士生导师,材料科学与工程学院 材料工程系副主任,中国科协“青托”人才。主要研究方向包括电磁冷坩埚定向凝固技术,钛铝合金及其复合材料组织与性能调控,超声波辅助制备钛铝合金组织与性能。
教育和工作经历
2015年03月--2019年01月,哈尔滨工业大学,博士
2019年07月--2021年12月,哈尔滨工业大学,师资博士后
2022年01月 ,哈尔滨工业大学,青年拔尖副教授
2022年05月 ,哈尔滨工业大学,博士生导师
研究领域
凝固科学与技术
1、TiAl基复合材料的组织演变和力学性能
2、超声波辅助制备TiAl基复合材料理论
3、TiAl基复合材料定向凝固及其定向热处理
4、超高强韧钛合金高通量制备与理论
近期论文
查看导师新发文章
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Shichen Sun, Hongze Fang*, Ruirun Chen*, Yili Li, Yanqing Su, Jingjie Guo. Discontinuous yield behavior in titanium alloys caused by activated dislocations during tensile testing at room temperature [J]. Scripta Materialia, 2023, 231, 115461.
Hongze Fang, Shu Wang, Ruirun Chen*, Qin Xu, Yongda Yan, Yanqing Su, Jingjie Guo. The effects of the formation of a multi-scale reinforcing phase on the microstructure evolution and mechanical properties of a Ti2AlC/TiAl alloy [J]. Nanoscale, 2021, 13: 12565-12576.
Hongze Fang, Ruirun Chen*, Yongda Yan, Qi Wang, Hongzhi Cui, Yanqing Su, Hongsheng Ding, Jingjie Guo. Study on dispersion of Ti2AlC particle and formation of columnar crystal with different solidification rates during CCDS TiAl-based composite [J]. Journal of alloys and compounds, 2020, 832:154893.
Hongze Fang, Ruirun Chen*, Yong Yang, Yanqing Su, Hongsheng Ding, Jingjie Guo. Effects of tantalum on microstructure evolution and mechanical properties of high-Nb TiAl alloys reinforced by Ti2AlC [J]. Research, 2019, 5143179, 1-11.
Hongze Fang, Ruirun Chen*, Yong Yang, Yanqing Su, Hongsheng Ding, Jingjie Guo, Hengzhi Fu. Role of graphite on microstructural evolution and mechanical properties of ternary TiAl alloy prepared by arc melting method [J]. Materials and Design, 2018, 156, 300-310.
Ruirun Chen, Hongze Fang*, Dong Chai, Yaohua Yang, Yanqing Su, Hongsheng Ding, Jingjie Guo, Hengzhi Fu. A novel method to directional solidification of TiAlNb alloys by mixing binary TiAl ingot and Nb wire [J]. Materials Science & Engineering A, 2017, 687: 181-192.
Shu Wang, Hongze Fang*, Dezhi Chen, Ruirun Chen*, Lingyan Zhou, Xiaokang Yang, Yanqing Su. A novel method and mechanism for simultaneously refining microstructure and controlling grain orientation in Ti48Al2Cr2Nb2.5C alloy [J]. Applied Materials Today, 2022, 28, 101516.
学术兼职
中国材料学会 凝固科学与技术分会 副秘书长;《CHINA FOUNDRY》青年编委会 委员