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首页> 外文期刊>Composites Part A: Applied Science and Manufacturing. >A multi-objective optimization approach for design of blast-resistant composite laminates using carbon nanotubes
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A multi-objective optimization approach for design of blast-resistant composite laminates using carbon nanotubes

机译:使用碳纳米管设计抗爆炸复合材料层压板的多目标优化方法

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A reliable process for the design of blast-resistance composite laminates is needed. We consider here the use of carbon nanotubes (CNTs) to enhance the mechanical properties of composite interface layers. The use of CNTs not only enhances the strength of the interface but also significantly alters stress propagation in composite laminates. A simplified wave propagation simulation is developed and the optimal CNT content in the interface layer is determined using multi-objective optimization paradigms. The optimization process targets minimizing the ratio of the stress developed in the layers to the strength of that layer for all the composite laminate layers. Two optimization methods are employed to identify the optimal CNT content. A case study demonstrating the design of five-layer composite laminate subjected to a blast event is used to demonstrate the concept. It is shown that the addition of 2% and 4% CNTs by weight to the epoxy interfaces results in significant enhancement of the composite ability to resist blast.
机译:需要一种设计抗爆炸复合材料层压板的可靠方法。我们在这里考虑使用碳纳米管(CNT)来增强复合界面层的机械性能。 CNT的使用不仅增强了界面的强度,而且显着改变了复合层压板中的应力传播。开发了简化的波传播仿真,并使用多目标优化范例确定了界面层中的最佳CNT含量。优化过程的目标是使所有复合层压板的层中所产生的应力与该层的强度之比最小。采用两种优化方法来确定最佳的CNT含量。案例研究表明了经受爆炸事件的五层复合层压板的设计,以证明这一概念。结果表明,按重量计,在环氧界面中添加2%和4%的CNT可以显着增强复合材料的抗爆炸性能。

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