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Effectiveness of FRP sandwich panels for blast resistance

机译:FRP夹芯板的抗爆效果

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Nowadays, sandwich panels are recognized for their importance in various technical fields especially in aeronautics, automotive, and structural engineering. Light-weight composite material can be used in sandwich panels due to having high stiffness-to-weight ratio. In this study, a numerical model has been conducted to study the effectiveness of fiber reinforced polymer (FRP) sandwich panels under blast effect. Results of numerical model are validated with experimental field tests in the literature. A new inner core configuration is proposed. In the experimental field test, inner core configurations were honeycomb shaped and sand was used as filling material. Newly proposed core configuration is formed of a combination of woven and honeycomb shapes and sand is used as a filling material. The two performance parameters considered in this study are the amount of energy absorbed by panels and their peak deformation. In order to track the enhancement of the panels' performance, a parametric study has been conducted. Moreover, the effect of changing the filling materials has been investigated. A good agreement between the numerical results and the experimental measurements has been realized. Finally, the analyses have revealed that using the new core configuration noticeably enhances FRP panels' behavior under blast loads. (C) 2016 Elsevier Ltd. All rights reserved.
机译:如今,夹芯板在各种技术领域,尤其是航空,汽车和结构工程中的重要性得到了认可。轻质复合材料由于具有较高的刚度重量比,因此可用于夹心板。在这项研究中,已经进行了数值模型研究爆炸效应下纤维增强聚合物(FRP)夹芯板的有效性。数值模型的结果通过文献中的实验现场测试得到了验证。提出了一种新的内部核心配置。在实验现场测试中,内芯构造为蜂窝状,并使用沙子作为填充材料。新提出的芯结构是由编织形状和蜂窝形状的组合形成的,并且沙子被用作填充材料。本研究中考虑的两个性能参数是面板吸收的能量及其峰值变形。为了跟踪面板性能的提高,已经进行了参数研究。而且,已经研究了改变填充材料的效果。数值结果和实验测量值之间已经实现了很好的一致性。最后,分析表明,使用新的岩心配置可显着增强爆炸荷载下玻璃钢面板的性能。 (C)2016 Elsevier Ltd.保留所有权利。

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