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Numerical Analysis on Influence of Preset Bubble in a Fluidfilled Structure on the Characteristics of Projectile Penetration and Structural Failure
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作者 WU Meng−meng HOU Hai−liang +3 位作者 LI Dian LI Yong−qing XIA Wei−xue YANG Shao−hong 《船舶力学》 北大核心 2025年第6期924-940,共17页
In this paper,the failure caused by HRAM loads which were generated by high-speed projectile penetration,and protection technology of the fluid-filled structure were explored.A bubble was preset on the projectile traj... In this paper,the failure caused by HRAM loads which were generated by high-speed projectile penetration,and protection technology of the fluid-filled structure were explored.A bubble was preset on the projectile trajectory in a fluid-filled structure.Based on the reflection and transmission phenomena of pressure waves at the gas-liquid interface and the compressibility characteristics of gases,a numerical analysis was conducted on the influence of preset bubble on projectile penetration and structural failure characteristics.The results indicate that the secondary water-entry impact phenomenon occurs when a preset bubble exists on the projectile trajectory,leading to the secondary water entry impact loads.The rarefaction waves reflected on the surface of the preset bubble cause the attenuation ratio of the initial impact pressure peak to reach 68.8%and the total specific impulse attenuation ratio to reach 48.6%.Furthermore,the larger the bubble,the faster the projectile,and the more obvious the attenuation effect.Moreover,due to the compressibility of the bubble,the global deformation attenuation ratio of the front and rear walls can reach over 80%.However,the larger the bubble size,the faster the projectile velocity,the smaller the local deformation attenuation effect of the rear wall,and the more severe the failure at the perforation of the rear wall. 展开更多
关键词 fluid-filled structure preset bubble HRAM loads PROJECTILE PENETRATION ATTENUATION
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聚醚醚酮复合材料性能特点与关键技术分析 被引量:1
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作者 周欣 罗忠 《化工新型材料》 CAS CSCD 北大核心 2022年第2期243-247,共5页
聚醚醚酮(PEEK)复合材料在耐高低温、自润滑、机械性能、绝缘屏蔽等方面综合性能优异,对提升水下无人装备战技性能具有重要价值。通过对比分析PEEK、纤维增强树脂基复合材料、特种工程塑料等性能特点,研究了水下无人装备发展技术趋势和... 聚醚醚酮(PEEK)复合材料在耐高低温、自润滑、机械性能、绝缘屏蔽等方面综合性能优异,对提升水下无人装备战技性能具有重要价值。通过对比分析PEEK、纤维增强树脂基复合材料、特种工程塑料等性能特点,研究了水下无人装备发展技术趋势和新材料需求,结合PEEK复合材料国内外技术发展现状,航空航天、兵器、机械、电气电子等应用现状,以及当前自主可控技术要求,提出了PEEK复合材料在水下无人装备上的典型应用场景与性能优势,剖析了PEEK复合材料结构设计与性能改进、自主可控树脂研发、工艺技术实现等关键技术及解决方案,为水下无人装备典型结构设计与选型提供有益参考。 展开更多
关键词 聚醚醚酮 水下无人装备 应用场景 关键技术
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