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Enhancement of blast resistance of sandwich plates

机译:增强夹心板的抗爆炸性

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摘要

This paper examines the effect of design modifications on response of sandwich plates to impulse pressure loads. The objective is to limit damage by delamination of the laminated facesheets and by crushing of the structural foam core. This has been achieved by introducing structural elements for energy storage, and by reducing the damage-related core crushing that dominates response of conventionally designed sandwich plates. In particular, ductile interlayers inserted between the outer facesheet and the foam core, can absorb a significant part of the incident energy, and protect the foam core from excessive deformation. One standard Design (1) and three modified sandwich plate Designs (2)-(4) have been analyzed and evaluated. The interlayers in modified designs were selected as a relatively stiff polyurethane rubber, and a fairly compliant elastomeric foam. Explicit dynamic finite element solutions were developed with the LS-Dyna software. The results show almost instant facesheet delamination and permanent crushing of the foam core in all designs. The pair of polyurethane and elastomeric foam interlayers reduced the peak kinetic energy and core compression by approximately 50%. The longitudinal strain in the outer facesheet was also reduced in the new sandwich designs to magnitudes which fall below the ultimate tensile limit.
机译:本文研究了设计修改对夹层板对脉冲压力载荷响应的影响。目的是通过层压面板的分层和结构泡沫芯的压碎来限制损坏。这是通过引入用于能量存储的结构元件,并通过减少与损坏相关的核心压碎来实现的,该压碎主导了常规设计的夹心板的响应。特别地,插入在外面板和泡沫芯之间的可延展的中间层可以吸收很大一部分入射能量,并保护泡沫芯免于过度变形。分析和评估了一种标准设计(1)和三种改进的夹心板设计(2)-(4)。选择改型设计的中间层作为相对坚硬的聚氨酯橡胶和相当柔顺的弹性泡沫。使用LS-Dyna软件开发了显式动态有限元解决方案。结果表明,在所有设计中,面板几乎都立即脱层,泡沫芯永久性破碎。聚氨酯和弹性体泡沫中间层对将峰值动能和核心压缩降低了约50%。在新的夹层设计中,外面板中的纵向应变也减小到低于极限拉伸极限的大小。

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