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Impact/Debonding Tolerant Sandwich Panel with Aluminum Tube Reinforced Foam Core

机译:铝管增强泡沫芯的耐冲击/脱胶夹芯板

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Sandwich construction has been extensively used in various fields. However, sandwich panels have not been fully exploited in critical structural applications due to damage tolerance and safety concern. A major problem of sandwich panels is the debonding at or near the core/face sheet interface, especially under impact loading, which can lead to a sudden loss of structural integrity and cause catastrophic consequences. In order to improve the debonding resistance and energy absorption of sandwich panel under impact loadings, a new foam core is proposed which is a hybrid core consisting of hollow metallic microtubes reinforced polymer matrix. The objective of this study was to characterize its static and dynamic performances. Two types of new hybrid cores were investigated in this work. One consisted of polymer resin reinforced by transversely aligned continuous metallic militubes, denoted as type-Ⅰ sandwich panel. The other was made of polymer resin reinforced by aligned continuous in-plane metallic militubes, denoted as type-Ⅱ sandwich panel. Additionally, the traditional sandwich panels with polymeric syntactic foam core were also prepared for comparisons. Static and impact tests demonstrated that interface debonding and subsequent shear failure in the core could be largely excluded from the type-Ⅱ panel. Meanwhile, a significant transition to ductile failure was observed in type-Ⅱ sandwich panel with dramatically enhanced load capacity and impact energy dissipation. The results indicated that type-Ⅱ panel may be considered a promising option for critical structural applications featured by debonding and impact tolerance.
机译:三明治结构已广泛用于各个领域。然而,由于损坏的耐受性和安全性考虑,夹心板尚未在关键的结构应用中得到充分利用。夹心板的主要问题是在芯/面板界面处或附近的剥离,特别是在冲击载荷下,这可能导致结构完整性突然丧失并造成灾难性后果。为了提高夹芯板在冲击载荷下的抗脱粘性和能量吸收,提出了一种新型泡沫芯,该泡沫芯是由中空金属微管增强的聚合物基体组成的混合芯。这项研究的目的是表征其静态和动态性能。在这项工作中研究了两种类型的新型混合核心。一种由通过横向排列的连续金属微管增强的聚合物树脂组成,表示为Ⅰ型夹心板。另一种由聚合物树脂制成,该聚合物树脂由对准的连续面内金属微管增强,表示为Ⅱ型夹心板。此外,还准备了具有聚合物复合泡沫芯的​​传统夹心板进行比较。静力和冲击试验表明,在Ⅱ型面板中可以大幅度地排除界面剥离和随后的岩心剪切破坏。同时,在Ⅱ型夹心板中观察到了向延性破坏的显着转变,并显着增强了负载能力和冲击能量耗散。结果表明,对于以脱胶和耐冲击性为特征的关键结构应用,Ⅱ型面板可能被认为是有前途的选择。

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