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首页> 外文期刊>Journal of Composite Materials >Low-velocity impact behavior of hollow core woven sandwich composite: Experimental and numerical study
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Low-velocity impact behavior of hollow core woven sandwich composite: Experimental and numerical study

机译:中空编织夹芯复合材料的低速冲击行为:实验与数值研究

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摘要

Low-velocity impact analysis of 3D woven hollow core sandwich composite was conducted experimentally and numerically. Damage modes, perforation loads, load-time and energy-time curves, contact time, force-displacement and deflection-energy relationships were studied for three energy levels on specimens with different thicknesses utilizing both FE simulations and low-velocity impact tests. According to the results, contact stiffness and perforation load decreased with the panel thickness, whereas panels of higher thicknesses exhibited higher energy absorption capacity. The FE model consisting of glass fabric and surrounding resin reasonably predicted the impact behavior and damage modes. Subsequently, it could be inferred that FE simulation is capable to be used instead of time-consuming experiments to study impact properties of such materials.
机译:对3D编织空心夹芯复合材料的低速冲击进行了实验和数值分析。利用有限元模拟和低速冲击试验,研究了三种不同厚度试样在三种能量水平下的损伤模式,穿孔载荷,载荷时间和能量-时间曲线,接触时间,力-位移和挠曲-能量关系。根据结果​​,接触刚度和穿孔负荷随面板厚度而降低,而较高厚度的面板表现出较高的能量吸收能力。由玻璃纤维和周围树脂组成的有限元模型可以合理地预测冲击行为和破坏模式。随后,可以推断出,可以使用有限元模拟代替费时的实验来研究此类材料的冲击性能。

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