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  2024, Vol. 45 Issue (6): 831-845    
  研究论文 本期目录 | 过刊浏览 | 高级检索 |
极坐标下连续密度梯度多孔金属材料设计及其夹芯管的抗爆性能研究
于学会1,李婷1,王安帅1,王茗仕2
1. 西安建筑科技大学
2. 西安交通大学
Design of Continuously Density-Graded Porous Metal Materials in Polar Coordinates and Study on the Blast Resistance of Sandwich Tubes
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摘要 利用3D-Voronoi技术,建立了极坐标下径向连续密度梯度泡沫铝及其夹芯管有限元模型,进而研究了夹芯管在内部爆炸载荷下的动态响应。分析了正梯度、负梯度、“V”型梯度(中间高两端低、中间低两端高)等芯材密度分布方式,芯材密度梯度大小,管壁与芯材装配方式以及炸药长径比对夹芯管抗爆性能的影响。结果表明:当芯材密度梯度大小相同时,负梯度夹芯管的外管最大变形量最小,中间低梯度夹芯管的比吸能最高,正梯度夹芯管的抗爆性能最劣;随着芯材密度梯度的增加,负梯度夹芯管的外管最大变形量显著减小,中间低梯度夹芯管的比吸能呈现出先增加后减少的趋势,中间高梯度夹芯管的抗爆性能减弱;将管壁与芯材进行理想粘结,有效提高了均匀、负梯度以及中间低梯度夹芯管的比吸能,但也增加了外管的最大变形量;在不同的炸药长径比下,负梯度夹芯管的外管最大变形量最小。
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于学会
李婷
王安帅
王茗仕
关键词 抗爆性能,连续密度梯度,夹芯管,3D-Voronoiblast resistance, density-graded foam, sandwich tubes, Voronoi technology    
Abstract:In this paper, the dynamic response of continuously density-graded aluminum foam sandwich tubes under internal explosion load was studied. The finite element model of the continuously density-graded aluminum foam and sandwich tubes was established in polar coordinates by 3D-Voronoi technology. The influences of the core density distribution, such as positive-gradient, negative-gradient, and V-shaped gradient including high in middle and low at both ends (middle-high-gradient), low in middle and high at both ends (middle-low-gradient), core density gradient, the assembly method of the tube wall and core, and length-to-diameter ratio of explosives on the antiknock performance of the sandwich tube structure were analyzed. The results demonstrate that when the core density gradient is the same, the maximum deformation of the outer tube in the sandwich tube with a negative-gradient core is the smallest, the sandwich tube with a middle-low-gradient core has the highest specific energy absorption, and the antiknock performance of the sandwich tube with a middle-high-gradient core is the worst. As the core density gradient increases, the maximum deformation of the outer tube in the sandwich tube with a negative-gradient core significantly decreases. The specific energy absorption of the sandwich tube with a middle-low-gradient core shows a trend of first increasing and then decreasing, while the anti-explosion performance of the sandwich tube with a middle-high-gradient core weakens. The ideal bonding between the tube walls and the core effectively improves the specific energy absorption of sandwich tubes with a uniform, negative-gradient, or middle-low-gradient core, but it also increases the maximum deformation of the outer tube. Under different length-to-diameter ratio of explosives, the maximum deformation of the outer tube in the sandwich tube with a negative-gradient core is smaller. The present work is expected to provide some insights for researchers and engineers to design such structures for protective engineering applications.
收稿日期: 2024-05-14      出版日期: 2024-12-27
基金资助:国家自然科学基金;陕西省自然科学基础研究计划;复杂服役环境重大装备结构强度与寿命全国重点实验室开放课题
通讯作者: 王茗仕     E-mail: mswang@xjtu.edu.cn
引用本文:   
于学会 李婷 王安帅 王茗仕. 极坐标下连续密度梯度多孔金属材料设计及其夹芯管的抗爆性能研究[J]. , 2024, 45(6): 831-845.
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