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Gas permeability of CFRP cross-ply laminates with thin-ply barrier layers under cryogenic and biaxial loading conditions

机译:CFRP在低温和双轴负载条件下具有薄层阻挡层的CFRP的气体渗透性

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Utilization of carbon fiber reinforced plastic (CFRP) composite materials in propellant tanks is expected to drastically reduce the structural weight of space vehicles. However, fuel leakage through the chain of matrix cracks caused by serious thermal residual stress is a considerable problem. To avoid fuel leakage, this study proposes leak barrier layers consisting of thin-ply prepregs. Biaxial tensile tests are performed for specimens with or without thin-ply barrier layers at cryogenic temperature, and the gas leakage properties of damaged CFRP cross-ply laminates are investigated. In addition, the formation of leakage paths at cryogenic temperature is simulated by the finite element method based on the experimental data. Finally, the experimental and numerical results demonstrate that thin-ply barrier layers increase the tolerance against damage and leakage.
机译:预计推进剂罐中的碳纤维增强塑料(CFRP)复合材料的利用率将大大降低太空车辆的结构重量。然而,通过严重的热残余应力引起的基质裂缝链的燃料泄漏是相当大的问题。为避免燃油泄漏,本研究提出了由薄层预浸料组成的漏屏障层。对具有或不具有薄层屏障层的试样进行双轴拉伸试验在低温温度下进行,并且研究了受损CFRP交叉层层压板的气体泄漏性能。此外,基于实验数据的有限元法模拟了低温温度下的泄漏路径的形成。最后,实验和数值结果表明,薄层屏障层增加了抗损坏和泄漏的容差。

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