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宋召军

发布时间:2026-01-07 11:03

基本情况

姓名:宋召军

出生年月:19866

职称:副研究员

最高学位:博士研究生

主要研究方向:船海结构强度与安全性评估

导师类别:学术型硕导/专业型硕导

工作单位:船海与能源动力工程学院

工作地址:武汉理工大学余家头校区33GF

联系方式:18571621572

Email:szj21950@163.com


教育及工作经历

20212-至今,武汉理工大学,船海与能源动力工程学院,副研究员

201910-20212月,武汉理工大学,船海与能源动力工程学院,讲师

20181-20191月,挪威科技大学,海洋技术系,博士联合培养

20149-20199月,华中科技大学,船舶与海洋工程学院,硕博连读

20089-20134月,沪东中华造船有限公司,生产管理部,助理工程师

20049-20086月,华中科技大学,船舶与海洋工程学院,本科


近期主持/参与代表性科研项目

2025-至今,XX某舱结构承压试验性能测试,GF横向,701所,主持;

2025-至今,典型板架结构水下效应及XX后效算法库开发,GF横向,参与;

2025-至今,流脉动压力激励下船舶辐射噪声预报技术,GF横向,海军工程大学,主持;

2024-2024年,双浮体试验平台全船有限元计算,企业横向,719所,主持;

2023-2024年,循环船体极限强度计算与试验,GF横向,708所,参与;

2020-2024年,XX循环载荷下船体结构低周疲劳性能和极限强度评估方法研究,基础加强,708所,参与;

2020-2022年,船体极限强度计算与试验,GF横向,708所,主持;


近期代表性学术成果

1.李晓彬,陈威,徐双喜,宋召军,王琪.舰船舱内爆炸结构毁伤与防护[M].北京,国防工业出版社,2026.

2.徐双喜,宋召军,谌伟,张士陈.船舶结构有限元直接计算方法与应用[M].武汉,武汉理工大学出版社,2026.

3.Song Z J*, Yang X, Xu R J, Liu Q C, Duan H, Li X B. Empirical formulae of predicting ultimate strength for stiffened panels considering included angle under longitudinal compression[J]. Thin-Walled Structures, 2025, 215: 113424.SCI,国际JCR1区)

4.Song Z J*, Liu Q C, Xu R J, Yang X, Yue J X. Ultimate strength attenuation behaviours of stiffened panels under cyclic extreme loads based on test and numerical simulations[J]. Ocean Engineering, 2025: 120447.SCI,国际JCR1区)

5.Song Z J*, Xu T L, Ren X H, Xu R J, Li X B. Load-end shortening curve of stiffener elements with beam-column buckling considering steel grades based on empirical formulae of critical stress[J]. Ocean Engineering, 2024: 118115.SCI,国际JCR1区)

6.Pan J, Xu R J, Song Z J*, Wan Q, Li X B. Study on the Load-end Shortening Formulae of Structural Elements including Hard Corner Element Considering Collapse Modes based on Test and Numerical Modelling[J]. Thin-Walled Structures, 2023, 185:110624.SCI,国际JCR1区)

7.Xu M C, Song Z J*, Wang T, Zhang W Z, Pan J. Empirical formulae assessment of ultimate strength for perforated stiffened panels under longitudinal compression[J]. Ocean Engineering, 2022: 112445.SCI,国际JCR1区)

8.Xu M C, Song Z J*, Pan J. Study on the similarity methods for the assessment of ultimate strength of stiffened panels under axial load based on tests and numerical simulations[J]. Ocean Engineering, 2021: 108294.SCI,国际JCR1区)

9.Song Z J, Xu M C*, Torgeir Moan, Pan J. Dimensional and similitude analysis of stiffened panels under longitudinal compression considering buckling behaviours[J]. Ocean Engineering, 2019, 187:106188.SCI,国际JCR1区)

10.Xu M C*, Song Z J, Zhang B W, et al. Empirical formula for predicting ultimate strength of stiffened panel of ship structure under combined longitudinal compression and lateral loads[J]. Ocean Engineering, 2018, 162: 161-175.SCI,国际JCR1区)

11.Xu M C*, Song Z J, Pan J, et al. Ultimate strength assessment of continuous stiffened panels under combined longitudinal compressive load and lateral pressure[J]. Ocean Engineering, 2017, 139:39-53.SCI,国际JCR1区)

12.Xu M C*, Song Z J, Pan J. Study on influence of nonlinear finite element method models on ultimate bending moment for hull girder[J]. Thin-Walled Structures, 2017, 119:282-295.SCI,国际JCR1区)

13.Xu M C*, Song Z J, Pan J, et al. Study on the influence of localised thermal load on collapse strength of stiffened panels under longitudinal compression[J]. Engineering Structures, 2021, 239(2):112364.SCI,国际JCR1区)

14.Xu M C*, Song Z J, Pan J. Collapse Behaviours of Stiffened Panels Under Longitudinal Compression Considering Heating and Cooling Processes[J]. International journal of steel structures, 2020, 20(4):1268–1278.SCI,国际JCR3区)

15.Xu M C*, Song Z J, Pan J, et al. Study on the influence of the initial deflection and load combination on the collapse behaviour of continuous stiffened panels[J]. International Journal of Steel Structures, 2017, 17(4):1427-1442.SCI,国际JCR3区)

16.Song Z J*, Yang X, Xu R J, Liu Q C. Study on the ultimate strength of irregular stiffened panels considering included angle under longitudinal compression. The 35rd International Ocean and Polar Engineering Conference. 2025, TPC-0215.(国际会议)

17.段淏,宋召军*,万琪,李晓彬. 921A钢板架欧拉应力计算的标准适用性研究[J].中国造船, 2023(006):064.EI,国内1

18.万琪,宋召军*,钱伟,杨鑫,李晓彬.组合载荷作用下加筋板极限强度相互关系公式[J].船舶力学, 2025(029):002.EI,国内1区)

19.潘晋,张得功,宋召军*,许仁杰.循环载荷下箱型梁考虑塑性累积特性的极限强度[J].船舶力学, 2025(029):012.EI,国内1区)

20.宋召军,杨鑫,刘清超,李晓彬.钢制方管载荷能力评估方法、装置、电子设备及存储介质.中国, CN 116577197 B.(发明专利)

21.宋召军,许天龙,徐志亭,刘清超,林宇帆.船体极限强度计算平台V1.0.中国, 2024SR1400373(软件著作权)


招生专业与就业

硕士招生:船舶与海洋工程、机械等

硕士就业:船舶、机械、力学等方向研究所、企业等


国际交流与合作

与挪威科技大学等合作,《Thin-Walled Structures》、《Ocean Engineering》等国际1SCI期刊审稿人





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