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Ballistic impact response of an UHMWPE fiber reinforced laminate encasing of an aluminum-alumina hybrid panel

机译:UHMWPE纤维增强层压板包裹铝铝混合板的弹道冲击响应

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摘要

The impact response of an ultrahigh molecular weight polyethylene (UHMWPE) fiber reinforced polymer matrix composite laminate has been investigated. The laminate encapsulated an aluminum alloy sandwich panel whose corrugated core was filled with prismatic alumina inserts. The laminate encased hybrid core target could sustain ceramic prism base impacts by a spherical, 12.7 mm diameter steel projectile with velocities in excess of 2.7 km s(-1). This was 150% higher than the ballistic limit of an equal areal density, similarly encapsulated aluminum plate target. By contrast, when the projectile impacted a hybrid core target at the apex of a ceramic prism insert, failure of the UHMWPE laminate on the rear face occurred at a lower impact velocity. High-speed imaging, three-dimensional digital image correlation and x-ray tomography measurements are used to show that upon impact the projectile and the ceramic insert fragment. These fragments then load the UHMWPE laminate on the rear face with a significantly reduced pressure compared to the impact pressure of the projectile on the front surface of the target. The loading area on the inner surface of the rear laminate was highest for a prism base impact and lowest for a prism apex impact. The inability to penetrate the rear laminate of the base impacted samples is consistent with the recent identification of an impact pressure controlled mechanism of progressive penetration in this class of laminate. (C) 2015 Elsevier Ltd. All rights reserved.
机译:研究了超高分子量聚乙烯(UHMWPE)纤维增强的聚合物基复合材料层压板的冲击响应。层压板封装了铝合金夹芯板,其波纹芯填充有棱柱形氧化铝嵌件。叠层包裹的混合芯靶可以承受直径超过12.7毫米的球形钢弹丸,其速度超过2.7 km s(-1),从而可以承受陶瓷棱镜的撞击。这比等面积密度的类似封装铝板靶的弹道极限高150%。相反,当弹丸撞击陶瓷棱镜插入物顶点处的混合核心目标时,背面的UHMWPE层压板以较低的撞击速度发生破坏。高速成像,三维数字图像相关性和X射线断层扫描测量显示了撞击弹丸和陶瓷插入物碎片后的情况。这些碎片然后将UHMWPE层压板的背面压力与弹丸对目标正面的冲击压力相比大大降低。在后层压板的内表面上的加载区域对于棱镜基础冲击最大,而对于棱镜顶点冲击最小。无法穿透基础受冲击样品的后层板与最近确定的此类层板中渐进渗透的冲击压力控制机制相一致。 (C)2015 Elsevier Ltd.保留所有权利。

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