科研成果: 出版专著和教材: [1] 《舰船结构抗导弹防护技术基础》.北京:GF工业出版社,2022.(学术专著) [2] 《水面舰艇强度》.北京:GF工业出版社,2020.(省部级重点教材) 发表学术论文:
[1] Chen Changhai*, Liu Ting, Cheng Yuansheng. Impact response of flowing-fluid filled square vessels. Ocean Engineering, 2022, 254: 111405. (JCR:Q1,中科院SCI期刊大类二区) [2] Chen Changhai*, Wang Ximeng, Hou Hailiang, Cheng Yuansheng, Zhang Pan, Liu Jun. Effect of strength matching on failure characteristics of polyurea coated thin metal plates under localized air blast loading: Experiment and numerical analysis. Thin-Walled Structures, 2020, 154: 106819. (JCR:Q1,中科院SCI期刊大类二区) [3] Liu Ting, Chen Changhai*, Cheng Yuansheng. A new analytical model for ballistic waves generated by subsonic penetration in water. Ocean Engineering, 2022, 263: 112472. (JCR:Q1,中科院SCI期刊大类二区) [4] Hou Hailiang, Chen Changhai*, Cheng Yuansheng, Zhang Pan, Tian Xuebing, Liu Ting, Wang Junze. Effect of structural configuration on air blast resistance of polyurea-coated composite steel plates: Experimental studies. Materials & Design 2019; 182: 108049. (JCR:Q1,中科院SCI期刊大类二区) [5] Li Yongqing, Chen Changhai*, Hou Hailiang, Cheng Yuansheng, Gao Haopeng, Zhang Pan, Liu Ting. The Influence of Spraying Strategy on the Dynamic Response of Polyurea-Coated Metal Plates to Localized Air Blast Loading: Experimental Investigations. Polymers. 2019; 11:1888. (JCR:Q1,中科院SCI期刊大类二区) [6] Chen Changhai*, Zhu Xi, Hou Hailiang, Luo Zhong, Tang Ting. Analytical model for high-velocity perforation of moderately thick ultra-high molecular weight polyethylene-woven laminated plates[J]. Journal of Composite Materials, 2015, 49(17): 2119-2136.(SCI: WOS: 000357571900006,EI: 20133816758162) [7] Chen Changhai*, Zhu Xi, Hou Hailiang, Zhang Lijun, Shen Xiaole, Tang Ting. An experimental study on the ballistic performance of FRP-steel plates completely penetrated by a hemispherical-nosed projectile[J]. Steel and Composite Structures, 2014, 16(3): 269-288.(SCI: WOS: 000337313600003,EI: 20141317510525) [8] Chen Changhai*, Zhu Xi, Hou Hailiang, Tian Xuebing, Shen Xiaole. A new analytical model for the low-velocity perforation of thin steel plates by hemispherical-nosed projectiles[J]. Defence Technology, 2017; 13:327-37.(SCI: WOS: 000414454600002) [9] Chen Changhai, Zhu Xi*, Zhang Lijun, Hou Hailiang, Shen Xiaole, Tang Ting. A comparative experimental study on the blast-resistant performances of single and multi-layered thin plates under close-range airblast loading[J]. China Ocean Engineering, 2013, 27(4): 523-535. (SCI: WOS: 000323201700008,EI: 20133816758162) [10] 王喜梦, 刘均, 陈长海*, 程远胜, 张攀. 近距空爆载荷下钢板/聚脲复合结构动响应特性仿真. 中国舰船研究, 2021, 16: 116-24. [11] 胡紫剑, 夏正泽, 陈长海*, 程远胜, 刘均. 船舶上层建筑开口群结构强度试验与外压载荷等效加载方法. 中国舰船研究, 2021, 16: 90-6+120. [12] 毛柳伟, 万昌召, 陈长海*, 程远胜. 低硬度聚脲/钢板复合结构抗高速破片侵彻机理试验. 北京理工大学学报.2022: 1-9. [13] 陈长海*,朱锡,侯海量.破片式战斗部空中爆炸毁伤载荷研究进展[J].中国造船,2016,57(4): 197-214.(EI: 20170803369391) [14] 陈长海*,侯海量,张元豪,朱锡,戴文喜.中厚背水金属靶板抗钝头弹高速侵彻的机理研究[J].上海交通大学学报,2017, 51(12): 1428-1434. [15] 陈长海*,侯海量,张元豪,朱锡,李典.钝头弹高速斜侵彻中厚背水金属靶板的机理研究[J].工程力学,2017, 34(11): 240-248.(EI: 20180404676408) [16] 陈长海*, 侯海量, 张元豪, 戴文喜, 朱锡, 方志威. 破片高速侵彻中厚背水钢板的剩余特性[J]. 爆炸与冲击,2017, 3(6): 959-965. (EI: 20174804471028) [17] 徐伟, 陈长海*, 侯海量, 朱锡, 李茂. 球头弹低速斜侵彻下靶板穿甲破坏机理[J]. 国防科技大学学报,2018,40(1): 49-55.(EI: 20182005205798) [18] 陈长海,朱锡*,王俊森,等.高速钝头弹侵彻中厚高强聚乙烯纤维增强塑料层合板的机制[J].复合材料学报,2013,30(5): 226-235.(EI: 20134817030397) [19] 陈长海*,朱锡,侯海量,沈晓乐,唐廷.弹丸低速贯穿纤维/金属组合薄靶板的实验研究[J].兵工学报,2012,33(12): 1473-1479.(EI:20130816047149) [20] 陈长海*,朱锡,侯海量,等.舰船舷侧复合装甲结构抗动能穿甲模拟实验[J].爆炸与冲击,2011,31(1): 11-18.(EI: 20111813953062) [21] 陈长海*,朱锡,侯海量,沈晓乐,唐廷.近距空爆载荷作用下固支方板的变形及破坏模式[J].爆炸与冲击,2012,32(4): 368-375.(EI: 20124115554367) [22] 陈长海*,朱锡,侯海量,沈晓乐,唐廷.近距非接触空爆载荷作用下固支方板破口计算[J].哈尔滨工程大学学报,2012,33(5): 601-606.(EI: 20122715215104) [23] 陈长海*,朱锡,侯海量,唐廷.球头弹丸低速冲击下薄板大变形的理论计算[J].华中科技大学学报(自然科学版),2012,40(12): 88-93.(EI: 20130415940938) [24] 陈长海,朱锡*,侯海量,沈晓乐,唐廷.结构形式对舰船舷侧复合装甲结构抗穿甲性能的影响研究[J].振动与冲击,2013,32(14): 58-63.(EI: 20133416646807) [25] 陈长海*,朱锡,侯海量,沈晓乐,唐廷.球头弹低速贯穿金属/FRP组合薄板的实验研究[J].弹道学报,2012,24(4): 51-55.(EI: 20130315910352) [26] 刘燕红,陈长海*,朱锡,李万,侯海量,等.近距空爆载荷作用下叠层薄板抗爆机理数值分析[J].船舶力学,2014,18(7): 821-833.(EI: 20143118012754) 授权发明专利:
[1] 一种正负泊松比循环杂交抗冲吸能结构及其应用.专利号:ZL 202110124603.2 [2] 正-负泊松比循环杂交抗近炸新型复合结构舱壁.申请号:202118000496.3 [3] 一种自然破片战斗部空爆冲击波和高速破片先后作用的临界爆距计算方法.专利号:ZL 201610145789.9 [4] 纤维增强复合材料层合结构安全防护速度计算方法.专利号:ZL 201510228850.1 [5] 舰艇舱室不等强度泄爆舱壁结构.专利号:ZL 201610392372.2 [6] 一种密集破片穿甲能力估计方法.专利号:ZL 201610074776.7 [7] 一种模拟爆炸冲击波和高速破片群联合载荷作用试验方法.专利号:ZL 201610484838.1 [8] 一种船体梁中挠曲变形板架结构的折减方法.专利号:ZL 201710451784.3
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