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An ultra-lightweight CFRP beam-string structure

机译:超轻型CFRP光束串结构

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摘要

In this work, an ultra-lightweight beam string structure made of carbon fiber reinforced polymer (CFRP) composites was designed, optimized, fabricated and tested. ANSYS APDL was adopted to optimize the design of the structure. A four-point bending test was carried out to investigate the structural behavior. Despite of being a non-full-scale structure, an exceptionally high structural efficiency, 56 N/g, was successfully achieved. Additionally, finite element analysis was conducted to investigate the effect of prestressing force in tension string. The added prestressing was identified to be able to increase the flexural strength of the structure by up to 15%. Moreover, with the thickened tension string, for instance for the 2.0-mm-thick string, 3% prestressing was able to provide a significant increase of the flexural strength and stiffness by up to 28% and 115%, respectively. The increased flexural strength was attributed to the improved stress distribution of compression beam. The proposed CFRP beam string structure, having an ultra-lightweight and a high load-carrying capacity, has a great potential to be widely adopted in conceptual developments and practical applications, particularly when high structural efficiency is required.
机译:在这项工作中,设计了由碳纤维增强聚合物(CFRP)复合材料制成的超轻的光束串结构,优化,制造和测试。采用ANSYS APDL来优化结构的设计。进行了四点弯曲试验以研究结构行为。尽管存在非全规模结构,但成功实现了极高的结构效率,56吨/克。另外,进行有限元分析以研究预应力在张力串中的效果。鉴定了添加的预应力能够将结构的弯曲强度提高至15%。此外,通过增厚的张力串,例如对于2.0mm厚的弦,3%预应力能够分别为弯曲强度和刚度的显着增加,分别高达28%和115%。增加的弯曲强度归因于压缩梁的改善应力分布。具有超轻质和高负荷承载能力的所提出的CFRP光束结构具有很大的潜力,可以在概念性发展和实际应用中广泛采用,特别是当需要高结构效率时。

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