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Experimental Study on Mechanical Properties of the Sandwich Composite Structure Reinforced by Basalt Fiber and Nomex Honeycomb

机译:玄武岩纤维与Nomex蜂窝复合材料增强三明治复合结构力学性能的实验研究

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摘要

The new sandwich composite structure formed by basalt fiber resin-based sheets and Nomex honeycomb has the advantages of being lightweight and environmentally friendly, as well as having excellent electromagnetic performance. It has very important application prospects in traditional and emerging fields. In this paper, the mechanical properties of this new sandwich composite structure are studied. The results show that, under the condition of flatwise compression, increasing the height of the honeycomb is conducive to improving the compressive capacity of the structure. However, the height should be controlled within a certain range in case of instability and yield of the honeycomb; under the bending conditions, the bending failure mode of the composite structure has gone through five stages. Owing to the honeycomb manufacturing process, the orientation of the honeycomb also has a great influence on the bending strength of the structure. After further analysis, it is found that basalt fiber sheets contribute the most to the bending stiffness of the structure, and the main role of honeycomb is to provide out-of-plane support. In both cases, the failure of specimens is ductile, and the combined structure still has a small amount of bearing capacity and maintains structural integrity. Research on this new type of composite structural material is very beneficial for promoting the application and development of green and lightweight special functional materials.
机译:由玄武岩纤维树脂基片和Nomex蜂窝形成的新型三明治复合结构具有重量轻,环保,电磁性能优良的优点。它在传统和新兴领域具有非常重要的应用前景。本文研究了这种新型夹芯复合结构的力学性能。结果表明,在平面压缩条件下,增加蜂窝的高度有利于提高结构的压缩能力。但是,如果蜂窝的不稳定和屈服,则高度应控制在一定范围内。在弯曲条件下,复合结构的弯曲破坏模式经历了五个阶段。由于蜂窝的制造过程,蜂窝的取向也对结构的抗弯强度有很大的影响。经过进一步分析,发现玄武岩纤维片对结构的弯曲刚度贡献最大,蜂窝的主要作用是提供平面外支撑。在这两种情况下,试样的破坏都是延性的,并且组合结构仍然具有少量的承载能力并保持结构完整性。对这种新型复合结构材料的研究对促进绿色轻质特种功能材料的应用和发展非常有益。

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