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Experimental study of the medium velocity impact response of sandwich panels with different cores

机译:夹芯夹芯板中速冲击响应实验研究

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The impact response of sandwich panels is not only dependent on the facesheet but also on the core material. This paper compares the dynamic response of sandwich panels with different core materials when subjected to medium velocity impacts. The sandwich panels were made of aluminium facesheets with five different cores, viz., low density balsa wood, high density balsa wood, cork, polypropylene honeycomb, and polystyrene foam. All the specimens were impacted by an instrumented projectile with a hemispherical steel head at three impact energies of 43, 85 and 1201. An accelerometer attached to the projectile and a high speed camera were used to collect data and record the impact process. 3D scanning technique was used to measure the deformation of front and back faces after impact. The impact properties of the sandwich panels with the five different cores were compared in terms of contact force, energy absorption, depth of indentation, overall bending deflection, etc. Post-mortem sectioning was conducted to examine the impact induced failures such as facesheet rupture, crush of core material, and debonding between facesheet and core. Finite element modelling was also carried out to elucidate the observed experimental results and further understand the effect of core material. (C) 2016 Elsevier Ltd. All rights reserved.
机译:夹芯板的冲击响应不仅取决于面板,而且取决于芯材。本文比较了具有不同芯材的夹芯板在中等速度冲击下的动力响应。夹心板由铝面板制成,具有五个不同的芯,即低密度轻木,高密度轻木,软木,聚丙烯蜂窝和聚苯乙烯泡沫。所有标本均受到带有半球形钢头的仪器弹丸的冲击,其冲击能量分别为43、85和1201,三种冲击力均被使用。弹丸上的加速度计和高速摄像头用于收集数据并记录冲击过程。 3D扫描技术用于测量冲击后正面和背面的变形。比较了具有五个不同芯部的夹芯板的冲击特性,包括接触力,能量吸收,压痕深度,整体弯曲挠度等。进行了事后剖析,以检查冲击导致的故障,例如面板破裂,压碎核心材料,并在面板和核心之间剥离。还进行了有限元建模,以阐明观察到的实验结果并进一步了解核心材料的作用。 (C)2016 Elsevier Ltd.保留所有权利。

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