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A Study on the Degradation Mechanisms of Honeycomb Structure by Moisture Absorption

机译:吸湿法降解蜂窝结构的机理研究

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Honeycomb structure, which are composed of FRP panels and a honeycomb core, are the superior materials because of their high specific characteristics and outstanding properties. Although the structures hve advantages for applications, some failures of structures have been repeatedly reported by moist absorption. Therefore, it is necessary to find out the degradation mechanisms of honeycomb structure in order to ensure their reliability.rnIn this study, two types of specimens (non-hole specimens and hole specimens) were manufactured, and immersed for 16weeks in the water bath. In addition, Flatwise tensile (FWT) testing and fractographic analysis were conducted to find out the degradation mechanisms of honeycomb structure. The different behavior associated with the strength reduction between non-hole specimens and hole specimens could be observed by FWT testing. In case of non-hole specimens, the resin types of their FRPs were the most important factors in mechanical degradation of the bonding strengths. Moreover, relatively fast FWT reductions and continuing reductions could be observed in hole specimens.
机译:由FRP面板和蜂窝芯组成的蜂窝结构由于其高比特性和出色的性能而成为上乘的材料。尽管该结构具有应用上的优势,但由于吸湿性,已经多次报告了一些结构的故障。因此,有必要找出蜂窝结构的降解机理,以确保其可靠性。在这项研究中,制造了两种类型的试样(非孔试样和孔试样),并在水浴中浸泡了16周。此外,进行了平板拉伸试验和分形分析,以找出蜂窝结构的降解机理。通过FWT测试可以观察到与非孔试样和孔试样之间的强度降低相关的不同行为。对于非孔试样,其玻璃钢的树脂类型是造成粘结强度机械劣化的最重要因素。此外,在孔样品中可以观察到相对快速的FWT降低和持续降低。

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