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首页> 外文期刊>International journal of impact engineering >Aluminium foam sandwiches collapse modes under static and dynamic three-point bending
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Aluminium foam sandwiches collapse modes under static and dynamic three-point bending

机译:铝泡沫三明治结构在静态和动态三点弯曲下的塌陷模式

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Static and dynamic three-point bending tests were carried out in order to investigate the structural response (collapse modes, energy dissipation, strain rate sensitivity) of two different typologies of aluminium foam sandwich (AFS) panels, consisting of a closed-cell aluminium foam core with either two integral (Schunk) or two glued (Alulight) faces. Impact measurements were performed by a bi-pendulum testing machine designed by the authors. It was found that different collapse modes can be obtained for samples with identical nominal dimensions, depending on the support span distance and on the own AFS properties. Simplified theoretical collapse models were introduced to explain the observed experimental behaviour, showing good agreement between predicted and experimental limit loads. As far as energy dissipation is concerned, no strain rate sensitivity was found for initial impact velocity up to about 1.2 m/s.
机译:进行静态和动态三点弯曲测试是为了研究两种不同类型的铝泡沫夹芯板(AFS)的结构响应(塌陷模式,能量耗散,应变率敏感性),该结构由闭孔铝泡沫组成核心有两个整体(Schunk)或两个胶合(Alulight)面。作者使用双摆锤试验机进行冲击测量。已经发现,对于相同的公称尺寸的样品,可以获得不同的塌陷模式,具体取决于支撑跨距和自身的AFS特性。引入了简化的理论坍塌模型来解释观察到的实验行为,显示了预测极限载荷与实验极限载荷之间的一致性。就能量耗散而言,未发现初始冲击速度高达约1.2 m / s时的应变率敏感性。

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