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高飘,女,1994.04,中共党员,副教授,工学博士,硕士研究生导师,湖北省“楚天学者计划”楚天学子。激光加工与智能监测团队核心成员。2022年6月博士毕业于华中科技大学,同年7月入职武汉纺织大学机械工程与自动化学院,迄今发表论文16篇(第一作者9篇),申请国家发明专利8项(授权6项),主持国家自然科学基金青年项目1项、湖北省自然科学基金指导性项目1项、校基金1项。担任中国机械工程学会增材制造技术分会第二届委员会青年委员。
代表性科研项目:
[1] 国家自然科学基金青年项目, 52305411, 基于热-磁时空协同的激光增材制造β-γ型TiAl合金裂纹抑制机理与方法, 2024-01至2026-12 主持
[2] 湖北省自然科学基金指导性项目,2025AFC100,基于碳纤维增韧的激光增材制造TiAl合金裂纹抑制机理与性能提升机制,2025-03至2027-02 主持
[3] 武汉纺织大学科技创新计划项目 2023-06至2025-06 主持
代表性论文:
[1] Piao Gao, Longchao Cao, Yuang Dong,Zemin Wang. Improved formability and microstructure of laser powder bed fusionTi-43Al-4Nb-1Mo-0.1B alloy with circular beam oscillation. Journal ofManufacturing Processes, 2024, 130: 35–47.
[2] Piao Gao, Xinqiang Lan, Siqi Yang, ZeminWang, Xiangyou Li, Longchao Cao. Defect elimination and microstructureimprovement of laser powder bed fusion β-solidifying γ-TiAl alloys via circularbeam oscillation technology, Materials Science & Engineering A, 2023, 873:145019.
[3] Piao Gao, Wenpu Huang, Huihui Yang, Guanyi Jing, Qi Liu, Guoqing Wang, ZeminWang, Xiaoyan Zeng. Cracking behavior and control of β-solidifyingTi-40Al-9V-0.5Y alloy produced by selective laser melting. Journal of MaterialsScience & Technology, 2020, 39: 144–154.
[4] Piao Gao, Zemin Wang. Tailored microstructure and enhanced comprehensivemechanical properties of selective laser melted Ti-40Al-9V-0.5Y alloy afteraging treatment. Materials Science and Engineering: A, 2020, 780: 139183.
[5] Piao Gao, Zemin Wang. Formability improvement, cracking behavior and control ofY-modified Ti-43Al-4Nb-1Mo-0.1B alloys produced by selective laser melting.Journal of Alloys and Compounds, 2021, 854: 157172.
[6] Piao Gao, Guanyi Jing, Xinqiang Lan, Shuhan Li, Yaxiong Zhou, Yun Wang, HuanqingYang, Kaiwen Wei, Zemin Wang. Effect of heat treatment on microstructure andmechanical properties of Fe-Cr-Ni-Co-Mo maraging stainless steel produced byselective laser melting. Materials Science and Engineering: A, 2021, 814:141149.
[7] Piao Gao, Zemin Wang, Xiaoyan Zeng. Effect of process parameters on morphology,sectional characteristics and crack sensitivity of Ti-40Al-9V-0.5Y alloy singletracks produced by selective laser melting. International Journal ofLightweight Materials and Manufacture, 2019, 2: 355-361.
[8] 高飘, 魏恺文, 喻寒琛, 杨晶晶, 王泽敏, 曾晓雁. 分层厚度对选区激光熔化成形Ti-5Al-2.5Sn合金组织与性能的影响规律. 金属学报, 2018, 54(7): 999-1009.
[9] 高飘, 兰新强, 周亚雄, 王云, 杨欢庆, 王泽敏. 激光选区熔化成形S-130钢热处理工艺研究. 中国激光, 2022, 49(2): 0202003.
[10] ShuncunLuo, Piao Gao, Hanchen Yu, Jingjing Yang, Zemin Wang, Xiaoyan Zeng.Selective laser melting of an equiatomic AlCrCuFeNi high-entropy alloy:Processability, non-equilibrium microstructure and mechanical behavior. Journalof Alloys and Compounds, 2019, 771: 387-397.
[11] HuihuiYang, Guanyi Jing, Piao Gao, Zemin Wang, Xiangyou Li. Effects ofcircular beam oscillation technique on formability and solidification behaviourof selective laser melted Inconel 718: From single tracks to cuboid samples.Journal of Materials Science & Technology, 2020, 51: 137-150.
[12] GuanyiJing, Wenpu Huang, Piao Gao, Liang Meng, Huihui Yang, Zemin Wang.Formability, microstructure and mechanical properties of 300M steel singletracks fabricated by high power selective laser melting. Optics and LaserTechnology, 2020, 131: 106434.
[13] Yue Su, Shuncun Luo, Liangmeng, Piao Gao,Zemin Wang. Selective laser melting of in situ TiB/Ti6Al4V composites:Formability, microstructure evolution and mechanical performance. ActaMetallurgica Sinica (English Letters), 2020, 33: 774–788.
[14] Libin Zhang, Yihong Ye, Jiacheng Zhou, Piao Gao, Zhiyin Gan, Sheng Liu, Longchao Cao, Study of native point defects inAl0.5Ga0.5N by first principles calculations, Computational Materials Science,2024, 245:113312.
[15] Libin Zhang, Yihong Ye, Jiacheng Zhou, Piao Gao, Zhiyin Gan, Xiaoshuang Xiong, Longchao Cao. Mg doping point defects inAl0.5Ga0.5N by density functional theory. Vacuum, 2025, 241: 114610.
[16] Libin Zhang, Ji Xia, Yihong Ye, Jiacheng Zhou, Piao Gao, Zhiyin Gan, Longchao Cao, Xiang Li. Impurity point defects inMg doping Al0.5Ga0.5N: A first principles study. Computational MaterialsScience 2025, 255: 113925.
授权发明专利:
[1] 高飘, 胡航, 许锦楠, 曹龙超, 蔡旺, 祁婷, 张丽彬, 何斌燕. 一种外场辅助激光增材制造装置及其使用方法. 发明专利, ZL202311735078.3.
[2] 高飘, 胡航, 王泽敏, 曹龙超, 蔡旺, 祁婷, 张丽彬, 何斌燕, 许锦楠. 一种抑制激光增材制造β-γ型TiAl合金裂纹的方法. 发明专利, ZL 202311695516.8.
[3] 王泽敏,高飘,李祥友. 一种自扰动激光增材制造方法. 发明专利, ZL 202111178984.9.
[4] 蔡旺,曹龙超,周奇,舒乐时,耿韶宁,高飘,张丽彬. 一种万瓦级超高功率激光焊接过程运动飞溅实时跟踪方法. 发明专利, ZL 202310778821.7.
[5] 蔡旺,曹龙超,周奇,舒乐时,耿韶宁,高飘,张丽彬. 一种超长焊缝与典型缺陷自动识别、定位及尺寸计算方法.发明专利, ZL202310785154.5.
[6] 蔡旺,曹龙超,周奇,舒乐时,耿韶宁,高飘,张丽彬. 一种焊缝表面形貌和熔透状态同步在线监测方法. 发明专利, ZL 20231 0881178.0.

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