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An Experimental and Numerical Determination on Low-Velocity Impact Response of Hybrid Composite Laminate

机译:杂交复合层压板低速冲击响应的实验与数值测定

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摘要

In this study, experimental and numerical investigations were carried out in order to determine the mechanical properties and impact response of hybrid composite laminate. The hybrid composite laminate was formed from plain woven carbon fiber reinforced epoxy (CFRE) and plain woven glass fiber reinforced epoxy (GFRE) fiber using VARTM (vacuum-assisted resin transfer molding) process. The mechanical properties of the hybrid composites were determined using tensile test device with a 1 mm/min loading rate at room temperature. In addition, hybrid composites were subjected to low-velocity impact test under different impact energy levels (10, 20, 30, 40 J) for determining the impact response. Moreover, mechanical properties and impact responses of CFRE and GFRE laminates were also determined to compare to those of hybrid composite (HCGFRE). Microstructure analysis was performed to investigate the damage surfaces of the fiber and matrix in the composite material subjected to impact and tensile forces. In numerical analyses, composite damage model (Mat 54) was utilized in LS-DYNA(R)explicit finite element program to simulate the impact behavior of CFRE, GFRE and HCGFRE laminates. Consequently, the tensile test results showed that hybrid composite laminate behaved more ductile than carbon composite laminate and it exhibited more brittle behavior than glass composite laminate. Also, it was determined that absorbed energy and impact load capacity of HCGFRE composite laminate are between absorbed energy and impact load capacity of CFRE and GFRE composite laminate. It was determined that numerical results indicate a similar tendency with the experimental results.
机译:在该研究中,进行实验和数值研究,以确定杂化复合层压板的机械性能和冲击响应。使用vartm(真空辅助树脂转移成型)工艺,由平织碳纤维增强环氧树脂(CFRE)和普通编织玻璃纤维增​​强环氧树脂(GFRE)纤维形成杂化复合层压板。使用在室温下具有1mm / min的装载速率的拉伸试验装置测定混合复合材料的机械性能。另外,在不同的冲击能级(10,20,30,40J)下对混合复合材料进行低速冲击试验,以确定影响响应。此外,还确定CFRE和GFRE层压材料的机械性能和冲击反应,以与杂化复合材料(HCGFRE)的影响进行比较。进行微观结构分析以研究经受冲击和拉伸力的复合材料中纤维和基质的损伤表面。在数值分析中,在LS-DYNA(R)明确的有限元件中使用复合损伤模型(MAT 54),以模拟CFRE,GFRE和HCGFRE层压板的影响行为。因此,拉伸试验结果表明,杂化复合层压材料表现得比碳复合层压材料更多的延展岩,并且它表现出比玻璃复合层压板更脆的行为。此外,确定HCGFRE复合层压板的吸收能量和冲击载荷能力在CFRE和GFRE复合层压板的吸收能量和冲击载荷能力之间。确定数值结果表明具有实验结果的类似趋势。

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