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Modeling, Simulation and Optimization of Steel Sandwich Panels under Blast Loading

机译:钢三明治板下施工钢夹层面板的建模,仿真与优化

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摘要

Honeycomb sandwich panels are commonly preferred in structural engineering as a design element meant to protect against blast loading, and this owes primarily to the fact that they are light in weight (due to the voids present) whilst carrying high energy absorption capacities. A widespread surge in acts of terrorism, and the resultant threat posed to structures, presents structural engineers with unique challenges pertaining to the design of blast-resistant structures that are both safe and reliable. Researchers worldwide have thus taken to closely studying the effects of sudden loads effected by detonative forces on certain elements and design concepts. To this end, an emergent design concept with proven efficacy is the honeycomb sandwich panel. Due to the practical difficulties associated with the study of explosive materials and replicating blast loads, software-based modeling and simulation may be favorable as a functional and convenient alternative. To this end, this work uses the finite element package ABAQUS® to study the behavior of hexagonal and squared honeycomb steel sandwich panels under the explosive effects of different amounts of trinitrotoluene (TNT). The results of finite element modeling of a specific honeycomb configuration are initially validated by comparing them with the experimental results from literature. Several configurations including different geometrical properties of the honeycomb wall are then investigated and the results are compared. Consequently, an optimization study is conducted with an objective to reduce the plastic strain of the back plate while the wall cell thickness is taken as a variable. Finally, the effectiveness of the core shape and wall thickness is discussed and conclusions are made.
机译:蜂窝夹层面板通常在结构工程中是优选的,因为设计元素意味着防止爆破载荷,这主要归于它们的重量(由于存在的空隙存在)而呈现出高能量吸收能力。恐怖主义行为的广泛激增,以及构造的所得威胁,呈现结构工程师,具有与抗爆炸结构的设计有关的独特挑战,这些抗爆结构都是安全可靠的。因此,全球的研究人员正在密切研究突然载荷对某些元素和设计理念的影响。为此,具有经过验证的疗效的紧急设计理念是蜂窝夹层面板。由于与爆炸性材料的研究相关的实际困难和复制爆炸载荷,基于软件的建模和模拟可能是有利的,作为功能和方便的替代方案。为此,这项工作采用了有限元包ABAQUS®研究六角形和平方蜂窝钢夹层面板的行为在不同量的三硝基甲苯(TNT)的爆炸性作用下。最初通过将它们与文献的实验结果进行比较,最初验证了特定蜂窝结构的有限元建模的结果。然后研究包括蜂窝壁的不同几何特性的几种配置,并比较结果。因此,用目标进行优化研究,以减少背板的塑性应变,而壁电池厚度被作为变量。最后,讨论了芯形和壁厚的有效性并进行了结论。

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