碳纤维增强夹层结构研究进展

Tidong Zhao, Jing Yang, Jinxiang Chen, Sujun Guan
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引用次数: 3

摘要

本文首先对网格芯、桁架芯和泡沫芯碳纤维增强夹层板的研究进展进行了综述,结果可归纳为以下四点:1)通过短纤维和z型纤维的增韧,提高了网芯和泡沫芯结构在弯曲荷载下的承载能力和吸能能力。2)芯层在压缩载荷作用下的渐进式屈曲模式能显著提高夹层结构的吸能能力。3)夹芯桁架结构的抗压破坏与节点强度密切相关。4)通过文献综述,探讨了三明治结构存在的问题及相应的对策,研究结果可以总结为以下两点。1)实施现行增韧措施后,脱粘得到一定程度的改善;然而,这种方法并不能防止脱粘。2)没有任何方法可以提高桁架-核心构件端节点的强度。因此,令人鼓舞的是,由纤维增强蛋白组成的小梁/蜂窝芯三明治结构-模拟甲虫前翅的生物结构-可以有效地解决上述问题。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Review of carbon fiber-reinforced sandwich structures
This paper first reviews the research progress of carbon fiber-reinforced sandwich plates with grid cores, truss cores, and foam cores, and the results can be summarized in the following four points. 1) The load-bearing capacity and energy absorption capacity of grid-core and foam-core structures under bending loads have been improved by toughening with short fibers and Z-pinned fibers. 2) The progressive buckling mode of the core layer under compressive loading can significantly improve the energy absorption capacity of a sandwich structure. 3) The compressive failure of a truss-core sandwich structure is closely related to the strength at the nodes. 4) Following a literature review, this paper discusses the existing problems in sandwich structures and the corresponding countermeasures, and the results can be summarized in the following two points. 1) After implementing the current toughening measures, the debonding is improved to a certain extent; however, this approach does not prevent debonding. 2) No method has been presented that can increase the strength of the end nodes in truss-core members. Therefore, it is encouraging that a trabeculae/honeycomb-core sandwich structure composed of fiber-reinforced proteins—mimicking the biological structure found in a beetle forewing—can effectively solve the abovementioned problems.
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