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Study on the low-velocity impact response and CAI behavior of foam-filled sandwich panels with hybrid facesheet

机译:混合面板泡沫夹芯板的低速冲击响应和CAI行为研究

摘要

Foam-filled sandwich panels with six types of facesheets were manufactured by vacuum-assisted resin injection (VARI) process. Low velocity impact test and compression after impact (CAI) test of the prepared panels were performed. Failure modes of different sandwich panels were analyzed by observing the contact surface and the cross section through damage region. Scanning electron microscope (SEM) was carried out to study the microstructure of the impacted specimens. It is found that matrix cracking, fiber breaking, foam cracking and debonding are the damage modes of sandwich panel with pure carbon facesheet, while other specimens merely show some of these modes after impact test. Panels with pure carbon facesheet have poor impact resistance properties, while panels with pure glass facesheet have preferable properties among all the specimens. Hybrid panel with ply mode of [C2/G2/Foam core/G2/C2] could provide higher maximum contact force and absorb more impact energy by carbon fiber breaking on the contact surface. In CAI test, wrinkling of facesheet and buckling of foam and skin are the two main damage modes. [C4/Foam core/C4] shows highest compress strength decline rate, while [G4/Foam core/G4] shows lowest rate. Decline rate of [C2/G2/Foam core/G2/C2] is very low but the compress strength of its undamaged specimen is not high.
机译:通过真空辅助树脂注入(VARI)工艺制造了具有六种面板的泡沫填充夹芯板。对所制备的板进行低速冲击试验和冲击后压缩(CAI)试验。通过观察接触面和穿过损坏区域的横截面,分析了不同夹心板的破坏模式。进行了扫描电子显微镜(SEM)研究了冲击试样的微观结构。研究发现,基体开裂,纤维断裂,泡沫开裂和脱粘是纯碳面板夹心板的损伤方式,而其他试样在冲击试验后仅表现出其中一些方式。纯碳面板的面板的抗冲击性能较差,而纯玻璃面板的面板在所有样品中均具有较好的性能。具有[C2 / G2 /泡沫芯/ G2 / C2]层板模式的混合面板可以提供更高的最大接触力,并通过碳纤维在接触面上的断裂吸收更多的冲击能。在CAI测试中,面板的起皱以及泡沫和皮肤的弯曲是两种主要的损坏方式。 [C4 /泡沫芯/ C4]显示最高的压缩强度下降率,而[G4 /泡沫芯/ G4]显示最低的压缩率。 [C2 / G2 /泡沫芯/ G2 / C2]的下降率非常低,但其未损坏样品的抗压强度却不高。

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