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STUDY OF THE BLAST RESISTANCE CAPACITY OF A NEW MULTI-ARCHED DOOR PANEL

机译:新型多拱形门板的抗爆破电阻的研究

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Conventionally,the blast-resistant structures,such as blast door panel,are designed and fabricated with solid materials of huge weight to resist disastrous blast or high velocity impact loads. This not only increases the material and construction costs,but also undermines the operational performance of the protective structures. To overcome these problems,many researchers try to use high-strength materials and different structural forms in structural design to resist the high blast and impact loads. This study introduces a new configuration of door panel with a structural form of multi-archedsurface. Its energy absorption and blast loading resistance capacities are numerically investigated by using finite element code Ls-Dyna. To calibrate the numerical model,some existing panels are also modeled. The results are compared with the existing numerical and testing data. The calibrated model is used to simulate the responses of curved panels with different number of arches. In comparison with the results,it is found that the proposed new multiarched door panel performs better than other forms of panels in resisting the blast loadings. This new arched door panel can be employed to mitigate blast loading effects in structural panel design.
机译:传统上,抗爆炸结构,例如喷射门板,设计和制造,具有巨大重量的固体材料,以抵抗灾难性的爆炸或高速冲击载荷。这不仅提高了材料和施工成本,而且削弱了保护结构的操作性能。为了克服这些问题,许多研究人员试图在结构设计中使用高强度材料和不同的结构形式来抵抗高爆炸和冲击载荷。本研究介绍了具有多拱形表面的结构形式的门板的新配置。通过使用有限元码LS-DYNA进行数值研究其能量吸收和鼓胀负荷能力。为了校准数值模型,一些现有面板也是为模拟的。将结果与现有数值和测试数据进行比较。校准模型用于模拟具有不同数量拱门的弯曲面板的响应。与结果相比,发现所提出的新型多体型门板在抵抗爆破载荷时比其他形式的面板更好地执行。这款新的拱形门面板可用于减轻结构面板设计中的爆炸载波。

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