主持或参与的科研项目
1)国家自然科学基金,青年科学基金项目,52505368,电磁能场辅助流体冲击超薄钛板的跨尺度流变机制研究,2026-01至2028年-12,在研,主持。
2)极端服役性能精准制造全国重点实验室,开放课题,Kfkt2024-04,2025-01至2027-01,在研,主持。
学术论文代表作
[1] Yan Z Q, Xiao A, Zhao P, et al. Deformation behavior of 5052 aluminum alloy sheets during electromagnetic hydraulic forming[J]. International Journal of Machine Tools and Manufacture, 2022,179: 103916.
[2] Yan Z Q, Wen W, Wang H P, et al. Electromagnetic hydraulic blanking flanging integrated process, Journal of Materials Processing Technology, 2025, 337: 118745.
[3] Yan Z Q, Xiao A, Wang H P, et al. Improved forming height and reduced energy consumption through an optimized hybrid quasi-static and high-speed forming strategy[J]. Journal of Materials Processing Technology, 2024, 332:118576.
[4] Yan Z Q, Xiao A, Cui X H, et al. Magnetic pulse welding of aluminum to steel tubes using a field-shaper with multiple seams. Journal of Manufacturing Processes, 2021,65: 214-227.
[5] Yan Z Q, Xiao A, Zhao P, et al. Microstructure and mechanical properties of AA5052 after electromagnetic hydraulic forming[J]. Materials Characterization, 2023,205: 113347.
[6] Yan Z Q, Xiao A, Zhao P, et al. Manufacture of complex shape parts by high-speed electromagnetic hydraulic forming method. Archives of Civil and Mechanical Engineering, 2022,22: 113-127.
[7] Yan Z Q, Xiao A, Cui X H, et al. Fracture behavior of 7075-T6 aluminum alloy under electromagnetic forming and traditional stamping. Archives of Civil and Mechanical Engineering, 2021,21: 134-149.
[8] Yan Z Q, Cui X H, Xiao A, et al. Improvement of circular hole flanging height using multi-directional electromagnetic flanging[J]. The International Journal of Advanced Manufacturing Technology, 2022,122(3-4): 1281-1292.
[9] Yan Z Q, Lin L, Chen Y, et al. Electromagnetic flanging using a field shaper with multiple seams[J]. The International Journal of Advanced Manufacturing Technology, 2022,120: 1747-1763.
[10] Yan Z Q, Du Z H, Cui X H, et al. Springback and deformation uniformity of high-strength aluminum alloy sheet using electromagnetic forming[J]. International Journal of Advanced Manufacturing Technology, 2021,5/6: 114-130.
国家发明专利
[1] 崔晓辉,颜子钦,喻海良,肖昂,杜志浩,夏雯桢. 一种接线端子的电磁成形系统及其成形方法:ZL202010811946.1[P].2022-4-26.(作为技术入股成果之一进行转化,技术成果价格1000万元)
[2] 崔晓辉,颜子钦,夏雯桢,喻海良,黄长清,代鹏逸. 一种用于管件的电磁-流体冲击复合成形装置及其成形方法:ZL202010228885.6[P].2022-5-27.
[3] 崔晓辉,颜子钦,黄长清,夏雯桢,杜志浩,肖昂. 一种用于板材的多点-电磁气化复合成形装置及成形方法:ZL 201911368389.4[P].2021-8-18.
[4] 崔晓辉,颜子钦,黄长清,喻海良,代鹏逸. 一种板管类零件的通用电磁成形装置:ZL201910931585.1[P].2021-7-13.
[5] 崔晓辉,颜子钦,喻海良,代鹏逸,黄长清. 一种设有随形组合式线圈的大尺寸板料成型装置及方法:ZL201910931576.2[P].2021-8-17.
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