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梯度泡沫铝夹芯管在外部爆炸载荷作用下的动态响应

Dynamic Response of Gradient Aluminum Foam Sandwich Tubes under External Explosive Loads.

作者信息

Li Ting, Zhao Jiangping, Yu Xuehui, Wang Anshuai, Chen Shangjun, Ni Na, Shao Zhushan

机构信息

School of Resources Engineering, Xi'an University of Architecture and Technology, Xi'an 710055, China.

School of Science, Xi'an University of Architecture and Technology, Xi'an 710055, China.

出版信息

Materials (Basel). 2024 Sep 13;17(18):4501. doi: 10.3390/ma17184501.

Abstract

In this paper, we numerically investigate the dynamic response and explosion resistance of gradient aluminum foam sandwich tubes subjected to external blast loads. Based on 3D-Voronoi technology, we construct density-graded aluminum foam cores to systematically explore the influence of core density distribution, density gradient, and average relative density on the protective performance of these structures. Our primary objective is to identify optimal design parameters that maximize explosion mitigation capabilities while balancing energy absorption and specific energy absorption capacities. The research results show that a positive gradient core configuration exhibits superior anti-explosion performance, significantly outperforming its uniform and negatively graded counterparts, particularly when the gradient value is substantial. For the positive gradient cores, an increase in the gradient value leads to a corresponding enhancement in explosion resistance. Conversely, in negatively graded cores, a higher gradient value diminishes the anti-explosion performance. Furthermore, while augmenting the relative density of the core layer does improve the overall explosion resistance of the sandwich tube, it comes at the cost of reduced energy absorption and specific energy absorption capabilities, highlighting the need for a delicate balance among these competing factors.

摘要

在本文中,我们对承受外部爆炸载荷的梯度泡沫铝夹芯管的动态响应和抗爆性能进行了数值研究。基于三维沃罗诺伊技术,我们构建了密度渐变的泡沫铝芯,以系统地探究芯密度分布、密度梯度和平均相对密度对这些结构防护性能的影响。我们的主要目标是确定最佳设计参数,在平衡能量吸收和比能量吸收能力的同时,最大限度地提高爆炸缓解能力。研究结果表明,正梯度芯结构具有卓越的抗爆性能,明显优于其均匀和负梯度对应结构,尤其是当梯度值较大时。对于正梯度芯,梯度值的增加会相应提高抗爆性能。相反,在负梯度芯中,较高的梯度值会降低抗爆性能。此外,虽然增加芯层的相对密度确实会提高夹芯管的整体抗爆性能,但这是以降低能量吸收和比能量吸收能力为代价的,这凸显了在这些相互竞争的因素之间需要进行微妙平衡。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5397/11433159/b19d7836c163/materials-17-04501-g001.jpg

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