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Impact Analysis of Composite Repair Patches of Different Shapes at Low Velocities for Aircraft Composite Structures

机译:低速复合形状对飞机复合结构的影响分析

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The area under crack for various aircraft composite structures can be effectively repaired using composite materials. Low velocity impact can cause barely visible damage to the interior structure of laminated composite. These impacts can cause delamination in composite materials. In this study, a finite element analysis was conducted using Abaqus/Explicit and the results of the analysis were compared to the experimental data from literature. E-glass/epoxy composite laminate was subjected to a low velocity impact test. To study the effect of patch repair, a composite patch was applied on a cracked laminate and a low velocity impact was then conducted on this model. The FEA results were validated with the experimental data and an approach to model an ideal composite patch shape was conducted. Different patch shapes like square, rectangle, circle and ellipse were designed and analysed on the crack by keeping the surface area of the patch common. All these patches were compared and an ideal patch shape was found for the model based on stress concentration on the patch. Finally, a parametric study was performed considering the change in impactor speed and impactor material on impact damage. The effectiveness of Gangadharan et al., J Aeronaut Aerospace Eng 2016, 5:4 DOI: 10.4172/2168-9792.1000173 finite element analysis of low velocity impact on aircraft composite structures is demonstrated.
机译:使用复合材料可以有效地修复各种飞机复合结构的裂纹下区域。低速冲击可能会对层压复合材料的内部结构造成几乎看不见的损坏。这些冲击可能导致复合材料分层。在这项研究中,使用Abaqus / Explicit进行了有限元分析,并将分析结果与文献中的实验数据进行了比较。对电子玻璃/环氧树脂复合层压板进行低速冲击测试。为了研究修补程序的效果,将复合修补程序应用于破裂的层压板,然后对该模型进行低速冲击。用实验数据验证了有限元分析结果,并进行了模拟理想复合贴片形状的方法。通过保持补丁的表面积相同,设计并分析了裂缝的不同形状,例如正方形,矩形,圆形和椭圆形。比较所有这些补丁,并根据补丁上的应力集中为模型找到理想的补丁形状。最后,进行了参数研究,考虑了冲击器速度和冲击器材料对冲击破坏的变化。证明了Gangadharan等人的有效性,《 J Aeronaut Aerospace Eng》 2016,5:4 DOI:10.4172 / 2168-9792.1000173低速撞击飞机复合结构的有限元分析。

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