部分科研项目
- 2022.03-2025.09,华为技术有限公司,XXXX合作项目,在研,主持;
- 2019.06-2021.05,中国博士后科学基金会,博士后创新人才支持计划,高性能自由曲面光学系统超精密制造技术基础,已结题,主持;
- 2018.05-2023.04,中国科学技术部,国家重点研发计划课题,多面共体自由曲面控形控位制造新方法及装备,在研,参加;
- 2018.01-2021.12,中国工程物理研究院,国家国防科工局科学挑战计划专题项目,微纳结构/器件的优质表面形成机制、演化规律,已结题,参加;
- 2017.01-2021.12,国家自然科学基金委员会,重点项目,光学晶体材料复杂曲面高精度成型及原位测量关键技术的基础研究,已结题,参加;
- 2019.04-2022.03,天津市科学技术局,天津市自然科学基金,多自由曲面反射成像系统一体免装配加工新体系,已结题,参加。
部分发明专利
- [1] 李泽骁, 张效栋, 纪俊棋. 超精密切削加工刀具状态参数计算方法、系统及应用. 202210183459.4.
- [2] 李泽骁, 张效栋, 米照勋. 一种超精密车削刀具中心与B轴回转中心对正方法. 202010691333.9.
- [3] 李泽骁, 张效栋, 米照勋. 一种刀触点均匀分布的超精密车削方法. 202010691348.5.
- [4] 李泽骁, 张效栋, 董禹初, 朱琳琳. 一种多自由曲面反射镜测量数据的评价计算方法. 202011225596.7.
- [5] 李泽骁, 张效栋, 房丰洲. 一种微透镜阵列面形的单点光学测量路径生成方法. 202110674765.3.
- [6] 李泽骁, 张效栋, 朱琳琳, 董禹初, 房长帅. 可测量分布在内腔的多自由曲面反射镜面形和位置的方法. 202011223913.1.
- [7] 张效栋, 李泽骁, 米照勋. 一种离轴多反成像系统加工方法. 201910442711.7.
- [8] 张效栋, 房丰洲, 李泽骁. 脆性材料复杂曲面超精密车削成型方法. 201710427481.8.
- [9] 张效栋, 房丰洲, 李泽骁, 朱琳琳. 脆性材料复杂曲面快速伺服超精密飞刀切削加工方法. 201710358648.X.
- [10] 房丰洲, 张效栋, 李泽骁, 朱琳琳. 一种脆性材料复杂曲面的加工方法. 201710358028.6.
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部分发表论文
- [1] Zexiao Li, Xianlei Liu, Fengzhou Fang, Xiaodong Zhang*, Zhen Zeng, Linlin Zhu, Ning Yan. Integrated manufacture of a freeform off-axis multi-reflective imaging system without optical alignment. Optics Express, 2018, 26(6): 7625-7637.
- [2] Zexiao Li, Fengzhou Fang, Xiaodong Zhang*, Xianlei Liu, Huimin Gao. Highly efficient machining of non-circular freeform optics using fast tool servo assisted ultra-precision turning. Optics Express, 2017, 25(21): 25243-25256.
- [3] Zexiao Li, Fengzhou Fang, Jinjin Chen, Xiaodong Zhang*. Machining approach of freeform optics on infrared materials via ultra-precision turning. Optics Express, 2017, 25(3): 2051-2062.
- [4] Zexiao Li, Xiaodong Zhang*. Subsurface deformation of germanium in ultraprecision cutting: characterization of micro-Raman spectroscopy. The International Journal of Advanced Manufacturing Technology, 2017, 91(1-4): 213-225.
- [5] Zhaoxun Mi, Zexiao Li*, Xiaodong Zhang. Construction of a compact off-axis three-mirror reflective system. Applied Optics, 2022, 61(9): 2424-2431.
- [6] Hao Zhang, Xiaodong Zhang, Zexiao Li*, Peng Wang, Zhipeng Guo. Removing single-point diamond turning marks using form-preserving active fluid jet polishing. Precision Engineering, 2022, 76: 237–254.
- [7] Yiting Duan, Xiaodong Zhang, Zexiao Li*. Fast and nanoscale-accuracy surface recovery of white-light scanning interferometry based on GPU-accelerated FFT-LMA-PSI algorithm. 2021, Proceedings of SPIE 12282: 1228215.
学术报告
- [1] The 9th International Conference of Asian Society for Precision Engineering and Nanotechnology (ASPEN 2022), Singapore. November 15-17, 2022. (Oral speech. Title: Study on high performance machining optical surface and its post-treatment strategy by active fluid jet polishing)
- [2] The 8th International Conference on Nanomanufacturing and 4th AET Symposium on ACSM and Digital Manufacturing (nanoMan 2022 and AETS 2022). Online. Aug 30-Sep 1, 2022. (Oral speech. Title: Precision topographic measurement of the monolithic freeform optical system)
- [3] The 7th International Conference on Nanomanufacturing (nanoMan 2021), Xi’an, China. (Online and offline). November 17-19, 2021. (Oral speech. Title: Ultra-precision machining of a monolithic freeform multi-reflective system without optical alignment)
- [4] ASPE 2021 Spring Topical Meeting: Freeform and Structured Surfaces, New York/Online meeting (on Zoom). April 28-29, 2021. (EST) (Oral speech. Title: Preliminary Study of Ultra Precision Turning of Freeform Optics on Germanium and Chalcogenide Glass)
- [5] The 4th CIRP Conference on Surface Integrity (CSI 2018), Tianjin, China. July 12-16, 2018. (Poster. Title: Feasibility study of machining freeform optics on germanium with damage-free finish)
- [6] The 7th International Conference of Asian Society for Precision Engineering and Nanotechnology (ASPEN 2017), Seoul, Korea. November 16-18, 2017. (Oral speech. Title: Fast tool servo assisted ultra-precision turning of freeform optics on infrared materials)
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