Flexural Behavior of Sandwich Composite Made of JFRP Honeycomb as Core and GFRP as Skin

Md. Rakibul Islam, Md. Arifuzzaman, Asif Karim Neon, Md. Shahe Duzzaman, Md. Rafiul Islam
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Abstract

The increasing demand of lightweight, strong and sustainable materials in aerospace, automobile and marine sectors is leading towards the development of new materials and structures. The sandwich composite is one of them which is well-known for their high strength to weight ratio and the fiber based sandwich structures with cellular core show comparatively good mechanical, acoustic, thermal and energy absorption properties than metallic cellular structure. The purpose of this work is to fabricate a sandwich structure with jute fiber reinforced polymer composite (JFRP) as core and glass fiber reinforced polymer composite (GFRP) as face sheet and to investigate bending properties of the fabricated structures for varying face sheet thicknesses. Skin and core honeycomb strips of the sandwich composites were manufactured using hand layup method and steel mold was used to obtain honeycomb shape. Flexural test results show that face sheet thickness has significant effect on the flexural behavior such as peak load, flexural strength and energy absorption. The failure mechanism during bending tests were also identified which would serve as a basis for future improvement of manufactured composites. The delamination at the interface between the core and the face sheet was the first catastrophic failure during bending. The presented sandwich structures are able to carry a significant amount of load even after failure.
JFRP蜂窝为芯、GFRP为皮夹层复合材料的抗弯性能
航空航天、汽车和海洋领域对轻质、坚固和可持续材料的需求日益增长,这导致了新材料和新结构的发展。夹层复合材料是其中一种以其高强度重量比而闻名的复合材料,具有蜂窝芯的纤维基夹层结构比金属蜂窝结构具有较好的力学、声学、热学和吸能性能。本研究以黄麻纤维增强聚合物复合材料(JFRP)为芯材,玻璃纤维增强聚合物复合材料(GFRP)为面材,制备了夹层结构,并研究了不同面材厚度下所制备结构的弯曲性能。采用手工叠层法制备了夹层复合材料的表皮和芯层蜂窝带,并采用钢模获得蜂窝形状。试验结果表明,面板厚度对峰值荷载、抗弯强度和能量吸收等抗弯性能有显著影响。在弯曲试验中,还确定了破坏机制,这将为未来制造复合材料的改进提供基础。在核心和面板之间的界面上的分层是弯曲过程中的第一个灾难性破坏。所提出的夹层结构即使在失效后也能承受相当大的载荷。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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