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Experimental assessment of the shield-to-salt-fog properties of basalt and glass fiber reinforced composites in cork core sandwich panels applications

机译:在软木芯夹芯板应用中玄武岩和玻璃纤维增​​强复合材料的屏蔽层对盐雾性能的实验评估

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In this paper, the effect of salt-fog exposition on the mechanical behavior of sandwich panels having cork agglomerate core was investigated. In particular, the aim of this research work is to assess the shield function of unidirectional basalt and E-glass reinforced polymer on the aging and failure mechanism of the core when such class of material are destined to operate in hostile environments (e.g., marine environment). To do this, the manufactured sandwich panels were exposed up to 60 days to salt-fog environment, according to ASTM B 117 standard. Unaged and aged specimens were analyzed through three point bending tests after aging time of 10, 25 and 60 days. Digital Image Correlation (DIC) was carried out to perform a strain field analysis of the longitudinal cross-sections. The differences in the mechanical behavior of the synergistic cooperation of the cork core with basalt and glass fiber were highlighted thorough this technique. Moreover, the failure mechanisms related to each combinations for different aging times were described. The experimental results showed that, the intrinsic conditions of the composites (e.g., presence of defects, poor fiber-matrix adhesion), that are strictly linked to the fiber-matrix compatibility and to the impregnation quality, may induce to differences in the local mechanical behavior of the sandwich panels and to a faster aging process of the cork core in the case of basalt fiber skinned sandwich, especially in the first phases of the exposition.
机译:本文研究了盐雾暴露对具有软木附聚物芯的夹心板力学性能的影响。尤其是,这项研究的目的是评估单向玄武岩和电子玻璃纤维增​​强聚合物在这类材料注定要在恶劣环境(例如海洋环境)中运行时对岩心的老化和破坏机理的防护作用。 )。为此,根据ASTM B 117标准,将制造的夹心板暴露在盐雾环境中长达60天。在老化10、25和60天后,通过三点弯曲测试对未老化和老化的试样进行分析。进行了数字图像相关(DIC),以进行纵向截面的应变场分析。通过这种技术可以突出软木芯与玄武岩和玻璃纤维协同协同作用的机械性能差异。此外,还描述了与每种组合在不同的老化时间下相关的失效机理。实验结果表明,复合材料的内在条件(例如,缺陷的存在,不良的纤维-基体粘合力)与纤维-基体的相容性和浸渍质量密切相关,可能会导致局部机械性能的差异。在玄武岩纤维蒙皮的三明治的情况下,尤其是在博览会的第一阶段,三明治板的特性以及软木芯的更快老化过程。

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