研究方向
結構安全性與可靠性分析(疲勞、斷裂及極限承載力研究)。長期從事船舶與海洋工程結構安全性與可靠性方面的研究,其中包括船舶與海洋工程結構疲勞強度評估方法及延壽技術、海上風電工程施工安裝關鍵技術、海上沉船(物)打撈的關鍵力學問題以及海洋工程結構模型試驗與測試技術等方面的研究工作。
代表性論文及專著
[1] Junlin Deng, Ping Yang.Research on CTOD for Low-Cycle Fatigue Analysis of Central-through Cracked Plates Considering Accumulative PlasticStrain[J].Engineering Fracture Mechanics, 2016,154(3): 128–139. (SCI源刊)
[2] J.L. Deng, P.Yang, Y. Chen.Low-cycle fatigue crack initiation life of hull-notched plate considering short crack effect and accumulative plastic damage[J]. Applied Ocean Research, 2017, 68: 65–76. (SCI源刊)
[3] J.L. Deng, P. Yang, Y. Chen.Accumulative Plastic Damage for Low Cycle Fatigue Analysis of a Hull Notched Plate[J]. Journal of Mechanics of Materials and Structures, 2018, 13(1): 121-139. (SCI源刊)
[4] Junlin Deng,WenlingTu,Kang Xiong,Ping Yang,Qin Dong.Analysis of biaxial proportional low-cycle fatigue and biaxial accumulative plasticity of hull inclined-crack plate[J].International Journal of Naval Architecture and Ocean Engineering, 2021. (SCI源刊)
[5] Junlin Deng*, Wenling Tu, Qin Dong, Dawei Dong, Shenglin Qiu. Experimental study on biaxial proportional low-cycle fatigue crack propagation of hull inclined-crack plate based on CTOD [J]. Journal of Mechanics of Materials and Structures,2022,17(3):207–228. (SCI&EI源刊)
[6] Bin Liu, Lei Zhang,Junlin Deng *. Impact Response of a Double-Bottom Structure with High and Penetrated Girders and Floors[J]. Journal of Marine Science and Engineering, 2024,12(2):1-17.(SCI&EI源刊)
[7] Qin Dong, Ping Yang, Geng Xu,Junlin Deng. Mechanisms and modeling of low cycle fatigue crack propagation in a pressure vessel steel Q345[J]. International Journal of Fatigue, 2016, 89(8): 2-10. (SCI&EI源刊)
[8]Wang Changzi; Wang Shuqing; Xie Lingjun; Liu Yaping; Deng Junlin; He Wentao. Fatigue crack growth behavior of marine steel under variable amplitude loading-combining DIC technique and SEM observation,International Journal of Fatigue,2023, 170(5):1-13. (SCI&EI源刊)
[9] Yijiang Xia, Jinhui Luo, Zhuolin Ou, Xin Han, Junlin Deng *, Ning Wu *. Predictive Control for Steel Rib Bending Based on Deep Learning[J]. Journal of Marine Science and Engineering, 2025,41(13):1-22. (SCI&EI源刊)
[10] Qin Dong, Ping Yang,Junlin Deng.Mechanisms and modeling of low cycle fatigue crack propagation in a pressure vessel steel Q345[J]. International Journal of Fatigue,2016, 89(8): 2-10. (SCI&EI源刊)
[11] Junlin Deng, Wenling Tu, Kang Xiong, Ping Yang, Qin Dong.Analysis of biaxial non-proportional low-cycle fatigue crack propagation behaviour of hull plate with an inclined crack based on accumulative plasticity[J].Journal of Failure Analysis and Prevention, 2021,21(4), 1345-1361. (ESCI&EI源刊)
[12] Wentao He, Changzi Wang,Junlin Deng, De Xie, Zhengyi Zhang.Effect of single tensile overload on fatigue crack growth behaviorbased on plastically dissipated energy and critical distance theory.Engineering Fracture Mechanics,2020,223:1-17. (SCI&EI源刊)
[13] He Wentao;Cui Xiaofei;Wang Changzi;Deng Junlin;Hu Qi;Zhang Zhengyi.Coupled Eulerian-Lagrangian (CEL) characterization of slamming response and failure mechanism on corrugated sandwich structures.Applied Ocean Research,2021,116.1-27. (SCI&EI源刊)
[14] Junlin Deng, Wenling Tu, Qin Dong, Dawei Dong, Shenglin Qiu. Analysis of biaxial proportional low-cycle fatigue crack propagation for hull inclined-crack plate with based on accumulative plasticity[J].SN Applied Science, 2021. (ESCI&EI源刊)
[15] 熊康,鄧軍林*,裴志勇,湯華林,塗雯羚.二軸低周疲勞載荷下船體裂紋板累積塑性與斷裂性能分析[J].船舶力學,2021. (EI源刊)
[16] 鄧軍林*,塗雯羚,許允,董大偉,邱聖臨,盧瑞濤.船體裂紋板雙軸非比例低周疲勞載荷下累積塑性行為研究[J].船舶力學,2021. (EI源刊)
[17] 鄧軍林,楊平,唐衛國.基於裂紋最大張口位移的加筋板彈塑性斷裂分析[J].船舶力學,2016,20(5):574-582. (EI源刊)
[18] 鄧軍林,楊平,董琴.基於累積塑性應變的表面裂紋板CTOD疲勞分析[J].華中科技大學學報自然科學版,2016,44(6):78-83. (EI源刊)
[19] Junlin Deng, Bo Du, Ping Yang.Research on the Fracture toughness for Ship Cracked Plates Based on the Accumulative Increment Plastic Deformation[J]. The Journal of Ship Mechanic,2016, 20(6): 748-757. (EI源刊)
[20] Junlin Deng, Ping Yang.Research on Low-Cycle Fatigue Crack-Propagation Life for Ship Cracked Plate Based on Accumulative plastic Damage[J]. The Journal of Ship Mechanic. 2017, 20(6): 748-757. (EI源刊)
[21] Junlin Deng, Ping Yang.Low-Cycle Fatigue Crack-Propagation Behavior of Ship Cracked Plate Considering the Accumulative Plasticity under Variable Amplitude Loading[J]. The Journal of Ship Mechanic. 2018, 22(3): 325-338. (EI源刊)
[22] Junlin Deng, Han Junfeng, YangPing.Study on mechanical behaviors of low-cycle fatigue crack tip for notch cracked plate subjected to variable amplitude loading[J]. Journal of ship mechanics,2019,23(3):342-359. (EI源刊)
[23] Junlin Deng, Ping Yang, Qin Dong, Xiang Yan. Analysis of Low-cycle Fatigue Crack Growth for Stiffened Plate Based on Accumulative Plastic Strain[J]. Mechanics and Materials. 2014, Vols. 496-500 :143-147 .
[24] Junlin Deng, Ping Yang, Qin Dong, Xiang Yan. Elasto-Plastic Fracture Analysis of Finite-width Cracked Stiffened Plate[J]. Mechanics and Materials. 2014, Vols. 496-500: 1052-1057.
[25] 鄧軍林,楊平,董琴.循環載荷下考慮累積塑性影響的含中心穿透裂紋板CTOD研究[J].船舶工程,Vol.37, No.8,2015.
[26] 鄧軍林,楊平,徐自旭.基於累積塑性破壞的船體缺口板低周疲勞萌生壽命研究[J].船舶工程,Vol.38, No.9,2015.