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Study of foam density variations in composite sandwich panels under high velocity impact loading

机译:高速冲击载荷下复合材料夹芯板泡沫密度变化的研究

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This study investigates the effect of foam density variations in sandwich structure under high velocity impact loadings. The structure consists of composite facing made from glass fiber woven roving reinforced unsaturated polyester resin and rigid polyurethane foam core with density of 37, 49, 70, 95,105 and 240 kg/m~3. Smooth bore gas gun in velocity range of 100-150 m/s and 10.7 g semi-spherical tip steel projectile was used for high velocity impact tests. Results showed 49 kg/m~3 foam density attained highest performance in term of ballistic limit velocity and energy absorption for fully perforated specimens. Optimized foam core density resulted in projectile yawing and side impact to back face and higher energy absorption. SEM analysis and morphological study revealed, low ballistic performance in low density foam core (below 40 kg/m~3) in the sandwich structure may be associated with foam's low cell wall thickness and strut. Similar analysis for the 40-70 kg/m~3 foam core densities showed increase in foam's cell wall thickness with no significant change for the strut and also highest strut thickness for the above 70 kg/m~3 foam density with no change in cell wall thickness.
机译:这项研究调查了高速冲击载荷下泡沫密度变化对三明治结构的影响。该结构由玻璃纤维编织粗纱增强不饱和聚酯树脂和硬质聚氨酯泡沫芯制成的复合面层,密度为37、49、70、95,105和240 kg / m〜3。速度范围为100-150 m / s的光面气枪和10.7 g的半球形尖端钢弹用于高速冲击试验。结果表明,在完全穿孔试样的弹道极限速度和能量吸收方面,49 kg / m〜3泡沫密度达到了最高性能。优化的泡沫芯密度导致弹丸偏航和对背面的侧面冲击,并吸收更多能量。 SEM分析和形态学研究表明,夹层结构中低密度泡沫核(40 kg / m〜3以下)的低弹道性能可能与泡沫的低泡孔壁厚和支柱有关。对40-70 kg / m〜3泡沫芯密度的类似分析显示,泡沫孔壁厚度增加,压杆没有明显变化,而高于70 kg / m〜3泡沫密度,压杆壁厚度也最高,而气泡没有变化室壁厚度。

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