Low-Velocity Impact Response of Polyurethane Foam Composite Sandwich Structures

S. C. Sharma, H. N. Narasimha Murthy, M. Krishna
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引用次数: 32

Abstract

Low-velocity instrumented impact tests were carried out on sandwich panels made of glass fiber-reinforced plastic facesheets and polyurethane foam core. The tests were carried out using a drop weight instrumented impact tester, connected to a data acquisition system. Four different types of sandwich samples using polyester/e-glass and epoxy/e-glass facesheet materials and polyurethane foam were considered for investigation. Two different face sheet materials were chosen to experimentally examine the effect of their elastic modulus on the impact response of the sandwich structures. The data acquisition system records the impact data such as impact force, penetration time and depth of penetration, and plots impact force versus depth of penetration and penetration time versus depth of penetration curves. From the recorded data the impact parameters such as maximum impact force, penetration time and depth of penetration versus impact energy were plotted to study the impact behavior. The results show that higher impact energy is required to break the epoxy/e-glass facesheet and backsheet sandwich specimens than other types of specimens examined. The impact damage caused to the facesheet, the core and the backsheet were thoroughly studied experimentally and the extent of damage caused to the facesheets and the core were also compared by finite element analyses.
聚氨酯泡沫复合材料夹层结构的低速冲击响应
对玻璃钢面板和聚氨酯泡沫芯芯夹层板进行了低速仪器冲击试验。试验使用了一个连接到数据采集系统的重量仪表冲击试验机。采用聚酯/e-玻璃和环氧/e-玻璃面片材料和聚氨酯泡沫进行了四种不同类型的三明治样品的研究。选择两种不同的面板材料,实验研究了其弹性模量对夹层结构冲击响应的影响。数据采集系统记录冲击力、侵彻时间、侵彻深度等冲击数据,绘制出冲击力与侵彻深度、侵彻时间与侵彻深度的曲线。根据实测数据,绘制了最大冲击力、侵彻时间、侵彻深度等参数与冲击能量的关系图,研究了冲击行为。结果表明:与其他类型的试样相比,环氧树脂/电子玻璃面板和背板夹层试样的破碎需要更高的冲击能量;通过实验深入研究了面板、芯板和背板的冲击损伤,并通过有限元分析比较了面板和芯板的冲击损伤程度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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