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Assessment of Residual Tensile Strength of Carbon/Epoxy Composites Subjected to Low-Energy Impact

机译:碳/环氧复合材料在低能量冲击下的残余拉伸强度评估

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This paper presents the results of an experimental study to investigate the effects of impact loading on the residual tensile strength of woven graphite epoxy laminates with a toughened resin system. In this study, both cross-ply, [0/90]_6, and angle-ply, [±45]_6, laminate lay-up configurations were studied and compared. Test specimens were subjected to various levels of impact loading, after which tensile pull tests were performed to determine the residual tensile strength properties. The study results demonstrated that impact damage causes a significant reduction in tensile strength properties of woven cross-ply [0°/90°] laminates. For example, cross-ply laminated composite specimens subjected to the lowest impact level, 6.8 J, exhibited a 25% decrease in ultimate tensile strength. Angle-ply woven laminates [±45°], however, exhibited an 18% increase in ultimate tensile strength after being subjected to 6.8 (J) impact. This characteristic of increasing tensile strength in [±45°] specimens is an example of increased fiber reorientation in composite laminates with limited fiber damage.
机译:本文介绍了一项实验研究的结果,以研究冲击载荷对具有增韧树脂体系的机织石墨环氧层压板的残余拉伸强度的影响。在这项研究中,研究并比较了[0/90] _6的交叉层和[±45] _6的角度层,它们的层压结构。使试样经受各种水平的冲击载荷,然后进行拉伸试验以测定残余拉伸强度性能。研究结果表明,冲击损伤会导致机织交叉层压[0°/ 90°]层压板的拉伸强度性能显着降低。例如,经受最低冲击水平6.8 J的交叉层压复合材料样品的极限抗拉强度降低了25%。但是,斜角编织层压板[±45°]在经受6.8(J)冲击后,其极限抗拉强度提高了18%。在[±45°]样品中增加拉伸强度的这一特征是在纤维损伤有限的情况下复合层压板中纤维重新定向增加的一个例子。

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