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首页> 外文期刊>International journal of impact engineering >Response of energy absorbing connector with polyurethane foam and multiple pleated plates under impact loading
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Response of energy absorbing connector with polyurethane foam and multiple pleated plates under impact loading

机译:冲击载荷下聚氨酯泡沫和多层板的能量吸收连接器的响应

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摘要

An innovative energy absorbing connecter with polyurethane (PU) foam and multiple pleated (MP) plates was designed to be placed between blast-resistant facade and structure to absorb blast-related energy along with reducing peak blast pressure transferred to the structure. Since the energy absorbing connector usually experiences impact loading transferred from blast-resistant facade, the deformation modes, force-displacement responses and energy absorbing characteristics of the contrived connectors subjected to impact loading were evaluated via employing drop-weight impact tests and FE simulations. The energy absorption, specific energy absorption as well as crushing force efficiency of the connectors were quantitatively evaluated. The experimental results revealed that filling PU foam could evidently enhance the energy absorbing performance of the connectors via increasing energy absorption, specific energy absorption as well as crushing force efficiency. Besides, increasing angle theta(0) (angle between MP plate and flat plate) and thickness of MP plate also leaded to higher specific energy absorption and absorbed energy. Finally, an energy-balance based analytical model incorporating transient strain rate effects of both steel and PU foam was proposed, which could be employed as a simple alternative to quickly yield the force-displacement relation of the connector. The accuracy of the developed analytical model was also validated with the experimental and finite element results.
机译:设计了一种创新的能量吸收连接器,该连接器具有聚氨酯(PU)泡沫和多层褶皱(MP)板,被设计为放置在抗爆炸的外墙和结构之间,以吸收与爆炸相关的能量,同时降低传递到该结构的峰值爆炸压力。由于吸能连接器通常承受从防爆墙面传递来的冲击载荷,因此,通过使用落锤冲击试验和有限元模拟,评估了承受冲击载荷的人为连接器的变形模式,力-位移响应和能量吸收特性。定量评估了连接器的能量吸收,比能量吸收以及破碎力效率。实验结果表明,填充PU泡沫可以通过增加能量吸收,比能量吸收以及压碎力效率来明显提高连接器的能量吸收性能。此外,增大角θ(0)(MP板与平板之间的角度)和MP板的厚度也导致更高的比能吸收和吸收能。最后,提出了一种基于能量平衡的分析模型,该模型结合了钢和PU泡沫的瞬时应变率效应,可以用作快速获得连接器力-位移关系的简单替代方法。实验和有限元结果也验证了所开发分析模型的准确性。

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