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Enhanced damping characteristics of carbon fiber reinforced polymer-based shear thickening fluid hybrid composite structures

机译:增强碳纤维增强聚合物基剪切增稠流体杂交复合结构的阻尼特性

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Lightweight carbon fiber reinforced polymer composite structures with high stiffness are at risk of resonant vibration. Our study proposes a methodology to reduce this risk by passively improving the damping ratio of carbon fiber reinforced polymer composite structures. We developed shear thickening fluid hybrid composite structures by applying polyimide tubes filled with shear thickening fluid having rheological properties into a composite laminate. In order to verify the proposed methodology, carbon fiber reinforced polymer-based shear thickening fluid hybrid composite beams were fabricated, and modal tests were subsequently performed to investigate their dynamic characteristics. The results revealed that the damping ratios for the initial six vibration modes of the carbon fiber reinforced polymer-based shear thickening fluid hybrid composite beam increased by 38%-174%; however, their Young's modulus and tensile strength, respectively, decreased by 11.25% and 14.08% when compared to those of normal carbon fiber reinforced polymer composite beams. We believe that the proposed methodology to improve the damping ratio will contribute in reducing the risk of vibration resonance of carbon fiber reinforced polymer composite structures in various applications.
机译:具有高刚度的轻质碳纤维增强聚合物复合结构面临着共振振动的风险。我们的研究提出了一种通过被动地改善碳纤维增强聚合物复合结构的阻尼比来减少这种风险的方法。通过将填充有流变性质的剪切增稠流体施加具有流变性质的聚酰亚胺管施加剪切增稠流体混合复合结构。为了验证所提出的方法,制造了碳纤维增强聚合物的剪切增稠流体杂交复合梁,随后进行了模态试验以研究其动态特性。结果表明,碳纤维增强聚合物基剪切增稠流体杂交复合梁的初始六种振动模式的阻尼比增加了38%-174%;然而,与普通碳纤维增强聚合物复合梁相比,它们的杨氏模量和拉伸强度分别降低11.25%和14.08%。我们认为,提出的提高阻尼比例的方法将有助于降低各种应用中碳纤维增强聚合物复合结构的振动共振的风险。

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