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首页> 外文期刊>Journal of Materials Design and Applications >Effect of the tin- versus air-side plate-glass orientation on the impact response and penetration resistance of a laminated transparent armour structure
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Effect of the tin- versus air-side plate-glass orientation on the impact response and penetration resistance of a laminated transparent armour structure

机译:锡对空气平板玻璃取向对层压透明铠装结构的冲击响应和抗穿透性的影响

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摘要

Our recently developed continuum-level, physically based, high strain-rate, large-strain, high-pressure mechanical material model for soda-lime glass has been enhanced to include differences in the flaw-size population between the so-called air-side and the so called tin-side of float-glass plates, and adapted for use in the case of borosilicate glass. The model was structured in such a way that it is suitable for direct incorporation, as a material user-subroutine, into standard commercial transient non-linear dynamics finite-element-based software packages. The model was parameterized using various open-literature sources. The experimental portion of the work, which consisted of 28 projectile impacts onto glass/polyurethane/polycarbonate-based test laminates, was intended to allow for quantification of the effect of air- versus tin-side borofloat strike surface when incorporated into a multi-layer, multi-functional test laminate. Experimental findings indicated the lack of a significant difference in the impact resistance of air- versus tin-side test laminate strike surfaces. Subsequent to these findings, computational simulations were carried out in order to establish if the proposed borofloat material model could capture the prominent experimentally observed damage modes and the measured V50, reconfirming the experimental findings. In general, a good agreement was found between the computational and the experimental results.
机译:我们最近开发的基于连续水平的,基于物理的,高应变率,大应变,高压的钠钙玻璃机械材料模型得到了增强,以涵盖所谓的空气侧之间的缺陷尺寸总体上的差异以及浮法玻璃板的锡面,适用于硼硅酸盐玻璃。该模型的结构使其适合作为材料用户子例程直接并入标准的基于瞬态非线性动力学的有限元软件包中。使用各种开放文献来源对模型进行参数化。这项工作的实验部分由28枚弹丸撞击玻璃/聚氨酯/聚碳酸酯基测试层压板组成,目的是当掺入多层时,可量化空气侧与锡侧硼浮法打击面的影响,多功能测试层压板。实验结果表明,空气侧和锡侧测试层压板的冲击表面的抗冲击性没有显着差异。在这些发现之后,进行了计算仿真,以确定所提出的硼浮法材料模型是否可以捕获实验观察到的突出损伤模式和测得的V50,从而再次证实了实验发现。通常,在计算结果和实验结果之间找到了很好的一致性。

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  • 来源
    《Journal of Materials Design and Applications》 |2012年第2期|p.119-143|共25页
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  • 作者单位
  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
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