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Crushing analysis and multi-objective optimization of bitubular hexagonal columns with ribs 被引量:3
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作者 ZOU Xiang GAO Guang-jun +4 位作者 DONG Hai-peng LI Jian ZHOU Xi-sai CHEN Wei GUAN Wei-yuan 《Journal of Central South University》 SCIE EI CAS CSCD 2017年第5期1164-1173,共10页
In order to improve the crashworthiness of thin-walled columns, the energy absorption characteristics of three columns under quasi-static axial crushing loads were analyzed through LS-DYNA. Numerical results show that... In order to improve the crashworthiness of thin-walled columns, the energy absorption characteristics of three columns under quasi-static axial crushing loads were analyzed through LS-DYNA. Numerical results show that the energy absorption capability of the bitubular hexagonal columns with middle to middle(MTM) ribs is the best, followed by the bitubular hexagonal columns with corner to corner(CTC) ribs and the bitubular hexagonal columns without(NOT) ribs, respectively. Then, the MTM rib was optimized by using multi-objective particle swarm optimization algorithm. Through the analysis of the Pareto front for specific energy absorption(SEA, A_(se)) and peak crushing force(PCF, F_(pc)), it is found that there is a vertex on the Pareto front. The vertex has the design parameters of t_1=1.2 mm, t_2=1.2 mm, A_(se)=11.3729 k J/kg, F_(pc)=235.8491 kN. When the PCF is in a certain size, on the left of the vertex, the point with t_2=1.2 mm has the biggest SEA, meanwhile on the right of the vertex, the point with t_1=1.2 mm has the biggest SEA. Finally, the global sensitivity analysis was conducted to investigate the effect of two design parameters. The result is obtained that both SEA and PCF for MTM are more sensitive to t_1 rather than t_2 in the design domain. 展开更多
关键词 bitubular HEXAGONAL column axial CRUSHING CRASHWORTHINESS optimization global sensitivity ANALYSIS
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Collision performance of bitubular tubes with diaphragms 被引量:1
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作者 董海鹏 高广军 +1 位作者 谢素超 李健 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第9期3657-3665,共9页
A numerical study of bitubular tubes with diaphragms compared with single and bitubular tubes subjected to dynamic axial impact force was presented. At first, the energy absorption response of the composite structure ... A numerical study of bitubular tubes with diaphragms compared with single and bitubular tubes subjected to dynamic axial impact force was presented. At first, the energy absorption response of the composite structure under axial loading was analyzed by finite element simulation. The results show that the efficiency of energy absorption can be improved by introducing diaphragms to the double-walled columns. Then, the effect of the amount and location of diaphragms, the shape and the size of the inner tubes, and the thickness of the composite structures were also studied numerically. The collision performance of the composite structure is affected by the deformation of diaphragms, as well as the interaction of outer and inner tube. The non-uniform distribution of diaphragms can improve the energy absorption efficiency of structures for a constant number of diaphragms. The specific energy absorption of the hexagonal inner tube is the highest, followed by the circular, octagonal and square ones. 展开更多
关键词 bitubular tube DIAPHRAGM energy absorption CRASHWORTHINESS
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点阵结构填充双薄壁管的能量吸收性能研究
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作者 鲍呈浩 金浩 王垠 《应用力学学报》 CAS CSCD 北大核心 2024年第5期1119-1128,共10页
为提高薄壁结构在压载作用下吸能能力及结构轻量化水平,一种以点阵结构填充薄壁吸能构件的概念被提出。同时,金属3D打印技术的发展为非传统低密度点阵填充结构的制备提供了可能性。提出了在双薄壁管中填充周期性点阵结构的新型薄壁吸能... 为提高薄壁结构在压载作用下吸能能力及结构轻量化水平,一种以点阵结构填充薄壁吸能构件的概念被提出。同时,金属3D打印技术的发展为非传统低密度点阵填充结构的制备提供了可能性。提出了在双薄壁管中填充周期性点阵结构的新型薄壁吸能结构。通过实验和数值模拟相结合的方法研究了点阵填充双薄壁管在轴向压载条件下的能量吸收能力。对比分析了点阵结构类型,点阵结构直径及薄壁管的厚度对结构吸能能力的影响。结果表明,在点阵填充双薄壁管结构的渐进变形过程中,由于点阵结构和双薄壁管的相互作用,结构的抗轴向破碎能力得到增强。点阵填充双薄壁管的能量吸收显著高于单个点阵和双薄壁管能量吸收之和。此外,在点阵填充双薄壁管结构的比能量吸收、破碎力效率等抗撞性能上也具有良好表现。提出的点阵填充双薄壁管结构在碰撞吸能领域具有一定的潜在应用前景,为防护结构的设计提供参考。 展开更多
关键词 点阵结构 双薄壁管 有限元模拟 能量吸收 耦合效应
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