(1)國家自然科學基金委員會, 青年科學基金項目(C類), 52505339, 小徑T型管電磁異流互斥翻邊機理與能場調控研究, 2026-01 - 2028-12, 30萬元, 主持 (2)湖南省自然科學基金, 青年項目, 2022JJ40475, 鎂合金波紋管電磁沖擊介質成形服役性能及成形機理,在研, 2022-01 - 2024-12, 5萬元, 結題, 主持 (3)國家自然科學基金委員會, 面上項目, 52275086, 非鋪裝道路下自動駕駛汽車軌跡規劃和動力學控制,在研, 2023-01-01 至 2026-12-31, 54萬元, 在研, 參與 (4)國家自然科學基金委員會, 國際(地區)合作與交流項目, 52211530054, 改善電動汽車可持續性的能量管理優化研究, 2022-05-01 至 2025-04-30, 40萬元, 在研, 參與 (5)國家自然科學基金委員會,青年科學基金項目,51705139,電-熱-老化耦合下增程式電動車能源系統優化設計與控制,2018-01-01至2020-12-31,24萬元,結題,參與 (6)湖南省科技廳,復雜形狀鋁合金車身件復合成形關鍵技術研究,湖南省重點研發計劃,2017GK2090,2017-11 至 2020-10,50萬元,結題,參與 |
[1]Deng H. K*, Liu D. N, Jiang H, Li G. Y, Cui J. J, Zhang X., Research on biaxial tensile fracture prediction of 5052 aluminum alloy on electromagnetic sheet bulging, Proceedings of the Institution of Mechanical Engineers, Part B: Journal of Engineering Manufacture, 2025. [2]鄧樺坤, 劉爽, 胡林*, 張耿, Maitane Berecibar, Md Sazzad Hosen. 熱膨脹影響下的電池模組結構優化, 汽車工程, 2024, 46(5): 852-861. [3]Tang K. J, Zhang X., Wu D. F, Dong D.Y., Deng H. K, Cui J. J. An experimental and theoretical investigation on residual stress of 7075-T651 aluminum alloy hole under electromagnetic cold expansion, Engineering Failure Analysis, 2024, 165:108793. [4]Zhang X., Zhang J.W, Wang Y.Y, Deng H. K, Duan C.W, Li G. Y, Cui J. J, Dong D.Y. Effect of punch type on microstructure and mechanical properties of aluminum alloy structures prepared by electromagnetic riveting, Archives of Civil and Mechanical Engineering, 2024,24:179. [5]Tang K. J, Wu D. F, Dong D.Y., Deng H. K, Cui J. J, Zhang X.. The modified Johnson-Cook constitutive model of 2A10 aluminum alloys under electromagnetic impact loading, Archives of Civil and Mechanical Engineering, 2024,24:74. [6]王英宇,張家偉,黃運凱,鄧樺坤,崔俊佳,張旭. Φ6mm-2A10鋁合金棒材電磁鐓粗變形機理數值仿真研究. 精密成形工程, 2023, 15(6): 11-18. [7] Deng H. K, Mao Y. F, Li G. Y, Zhang X, Cui J. J*, AA5052 failure prediction of electromagnetic flanging process using a combined fracture model. Archives of Civil and Mechanical Engineering, 22, 84, 2022. [8] Zhang X, Huang Y. K, Wang Y. Y, Shen W, Cui J. J, Li G. Y, Deng H. K*, Numerical simulation and experimental study on electromagnetic punching-flanging process of 6061 aluminum alloy sheets. Journal of Manufacturing Processes, 84, 902-912, 2022. [9] Deng H. K, Yang S. S, Li G. Y, Zhang X, Cui J. J*, Novel method for testing the high strain rate tensile behavior of aluminum alloys. Journal of Materials Processing Technology, 280, 116601, 2020. [10] Deng H. K, Mao Y. F, Li G. Y, Cui J. J*, A study of electromagnetic free forming in aa5052 using digital image correlation method and FE analysis. Journal of Manufacturing Processes, 37, 595605, 2019. [11] Li G. Y, Deng H. K, Mao Y. F, Zhang X, Cui J. J*, Study on aa5182 aluminum sheet formability using combined quasi-static-dynamic tensile processes. Journal of Materials Processing Technology, 255, 373-386, 2018. [12] Yang S. S, Sun L. Q, Deng H. K, Li G. Y, Cui J. J*,A modified Johnson-Cook model of AA6061-O aluminum alloy with quasi-static pre-strain at high strain rates,International Journal of Material Forming, 2020, 14(04): 677-689. [13] 鄧樺坤, 鄭月, 毛云飛, 崔俊佳, 李光耀*. 鋁合金車門把手磁脈成形工藝中貼模性能研究, 精密成形工程, 2021, 13(04):16-22. [14] 鄭月, 鄧樺坤, 楊帥帥, 崔俊佳, 李光耀*. AA5182鋁合金兩步高速拉伸的試樣設計及其性能研究, 精密成形工程, 2021, 13(04): 23-28.
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