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Water Impact of Syntactic Foams

机译:句法泡沫对水的影响

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摘要

Syntactic foams are particulate composite materials that are extensively integrated in naval and aerospace structures as core materials for sandwich panels. While several studies have demonstrated the potential of syntactic foams as energy absorbing materials in impact tests, our understanding of their response to water impact remains elusive. In this work, we attempt a first characterization of the behavior of a vinyl ester/glass syntactic subject to slamming. High-speed imaging is leveraged to elucidate the physics of water impact of syntactic foam wedges in a free-fall drop tower. From the images, we simultaneously measure the deformation of the wedge and the hydrodynamic loading, thereby clarifying the central role of fluid–structure interaction during water impact. We study two different impact heights and microballoon density to assess the role of impact energy and syntactic foam composition on the slamming response. Our results demonstrate that both these factors have a critical role on the slamming response of syntactic foams. Reducing the density of microballoons might help to reduce the severity of the hydrodynamic loading experienced by the wedge, but this comes at the expense of a larger deformation. Such a larger deformation could ultimately lead to failure for large drop heights. These experimental results offer compelling evidence for the role of hydroelastic coupling in the slamming response of syntactic foams.
机译:句法泡沫是颗粒状复合材料,已广泛集成在海军和航空航天结构中,作为夹芯板的核心材料。尽管几项研究已经证明了复合泡沫在冲击试验中作为能量吸收材料的潜力,但我们对它们对水冲击的反应的了解仍然难以捉摸。在这项工作中,我们尝试对遭受撞击的乙烯基酯/玻璃句法的行为进行首次表征。利用高速成像来阐明自由落体式降落塔中句法泡沫楔形物对水的影响的物理原理。从图像中,我们同时测量了楔形的变形和流体动力载荷,从而阐明了水撞击过程中流固耦合的中心作用。我们研究了两种不同的撞击高度和微气球密度,以评估撞击能量和句法泡沫成分对撞击响应的作用。我们的结果表明,这两个因素在句法泡沫的猛烈反应中都起着至关重要的作用。减小微气球的密度可能有助于降低楔形件承受的流体动力载荷的严重性,但这是以较大变形为代价的。如此大的变形最终会导致大落差的失效。这些实验结果提供了令人信服的证据,证明了水弹性偶合在句法泡沫的撞击响应中的作用。

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