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Numerical simulation on the anti-penetration performance of polyurea-core Weldox 460 E steel sandwich plates

机译:多核 - 核心焊接460 E钢三明治板防渗性能的数值模拟

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摘要

Polyurea has the characteristic of strong energy absorption capacity, and thus it is considered to be an excellent material for structural protection. Therefore, research on the anti-penetration performance of polyurea-core sandwich plates is of great significance for understanding the mechanism of protection and extending its application. In this paper, the anti-penetration performance of polyurea-core sandwich plates is investigated by using the AUTODYN-2D axisymmetric algorithm. Firstly, the accuracy of the numerical algorithm and the polyurea material model are both validated against the experimental data. On the basis, four different thicknesses (from 8 mm to 20 mm) of the interlayer and seven different initial impact velocities (from 300 m/s to 1100 m/s) are selected to study the anti-penetration performance of the polyurea-core sandwich plates under different conditions. Meanwhile, the comparative numerical cases are also performed using rubber-core sandwich plates. The results show that during the penetration, the polyurea presents obvious self-closing behavior, which increases the ballistic resistance. With respect to the rubber-core sandwich plate, the velocity drop per unit areal density of the polyurea-core sandwich plate, as well as the energy absorption ratio, is always greater. As a result, the polyurea interlayer can significantly improve the anti-penetration performance of the sandwich plate.
机译:Polyurea具有强能量吸收能力的特点,因此被认为是结构保护的优异材料。因此,对多熔尿夹芯板的抗渗透性能的研究对于了解保护机制和延长其应用具有重要意义。本文采用Autodyn-2d轴对称算法研究了多核 - 芯夹芯板的抗渗透性能。首先,数值算法和聚脲材料模型的准确性均针对实验数据验证。在基础上,选择四种不同的厚度(从8mm至20mm),夹层和七种不同的初始冲击速度(从300m / s至1100 m / s),以研究聚脲核的抗渗透性能夹层板块在不同的条件下。同时,使用橡胶芯夹层板也进行比较数值壳体。结果表明,在渗透过程中,聚脲呈现明显的自闭行为,这增加了抗弹性。关于橡胶芯夹层板,聚脲芯夹层板的每单位面积密度以及能量吸收率总是更大的速度下降。结果,聚脲层间可以显着提高夹层板的防渗透性能。

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