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Sagging damage characteristics of hull girder with trapezoidal cross-section subjected to near-field underwater explosion 被引量:4
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作者 Hai-tao Li xin-ying zheng +3 位作者 Chi Zhang Zhi-yuan Mei Xue-fei Bai Kai Liu 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2023年第3期1-13,共13页
To investigate the overall damage characteristics and failure modes of a warship subjected to an underwater non-contact near-field explosion,a hull girder with a trapezoidal cross-section was designed,manufactured,and... To investigate the overall damage characteristics and failure modes of a warship subjected to an underwater non-contact near-field explosion,a hull girder with a trapezoidal cross-section was designed,manufactured,and tested.The design criteria and parameters were determined according to the similarity criterion.Dynamic responses of the girder freely floating on water were obtained under varying conditions,including stand-off distance,charge mass,and position of attack.Damage morphologies of the girder model were obtained.Based on our analysis,basic conditions for sagging damage of the hull girder are proposed.The aim of this study was to determine an efficient method of attack resulting in the most severe damage to the ship hull.The experimental results show that the girder mainly exhibits a first-order response when the first wet frequency of the girder is close to the frequency of the explosion bubble pulsation.The largest deformation was observed when the underwater explosion occurred directly below the midspan of the girder compared to other explosions of the same intensity at different attack positions.When the ratio of stand-off to maximum bubble radius(λ)satisfies 0.7≤λ<2,the bubble mainly causes sagging damage instead of hogging.Asλdecreases(1≤λ<2),the sagging damage increases under the same charge mass.However,asλdecreases further(0.7≤λ<1),the sagging deformation decreases.This is likely due to the impact of the liquid jet formed by the collapsing bubble,which causes the girder deformation to shift from sagging back to hogging deformation.The initial shock wave excites the high-frequency response of the girder structure but contributes very little to the overall velocity and displacement.However,bubble pulsation typically causes a low-frequency response,which will affect the velocity and displacement of the girder.The low-pressure region of the flow field formed by bubble pulsation and resonant coupling between the girder and the bubble are the predominant causes of damage to the overall girder structure. 展开更多
关键词 UNDERWATER BUBBLE GIRDER
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氮离子注入及DLC涂层对Ti6Al7Nb合金在人工唾液中微动磨损性能的影响(英文) 被引量:4
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作者 郑新颖 张雅蓉 张保荣 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2017年第5期1071-1080,共10页
通过往复滑动微动磨损实验研究Ti6Al7Nb合金、氮离子注入Ti6Al7Nb合金、DLC涂层Ti6Al7Nb合金在人工唾液环境下的磨损性能。运用X射线衍射分析、拉曼光谱分析、三维轮廓分析、扫描电镜形貌和摩擦动力学行为分析等方法,详细讨论了表面改... 通过往复滑动微动磨损实验研究Ti6Al7Nb合金、氮离子注入Ti6Al7Nb合金、DLC涂层Ti6Al7Nb合金在人工唾液环境下的磨损性能。运用X射线衍射分析、拉曼光谱分析、三维轮廓分析、扫描电镜形貌和摩擦动力学行为分析等方法,详细讨论了表面改性层的磨损特性。结果表明:随着氮离子浓度的增加,Ti6Al7Nb合金的抗微动磨损性能提高。具有DLC涂层的低氮离子注入Ti6Al7Nb合金显示出良好的抗微动磨损性。此外,由于其特殊的结构,DLC涂层组具有更好的耐腐蚀性能。在人工唾液环境下,DLC涂层Ti6Al7Nb合金组相比氮离子注入Ti6Al7Nb合金组具有更好的抗磨损性能。 展开更多
关键词 Ti6Al7Nb合金 离子注入 DLC涂层 微动磨损行为
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