Gul Waseem, Xia Yu En, Gérard Pierre, Ha Sung Kyu
Department of Mechanical Engineering, Hanyang University, 222 Wangsimni-ro, Seongdong-gu, Seoul 04763, Republic of Korea.
Arkema, G.R.L., 64170 Lacq, France.
Polymers (Basel). 2023 Sep 10;15(18):3716. doi: 10.3390/polym15183716.
Carbon neutrality has led to a surge in the popularity of hydrogen tanks in recent years. However, designing high-performance tanks necessitates the precise determination of input material properties. Unfortunately, conventional characterization methods often underestimate these material properties. To address this limitation, the current research introduces alternative designs of ring tensile specimens, which enable accurate and reliable characterization of filament-wound structures. The advantages and disadvantages of these alternative designs are thoroughly discussed, considering both numerical simulations and experimental investigations. Moreover, the proposed ring tensile methods are applied to characterize thermoplastic composites for hydrogen storage tanks. The results indicate that the mechanical strengths and stiffness of carbon fiber-reinforced thermoplastic Elium 591 composites closely match those of epoxy-based composites. This newfound accuracy in measurement is expected to contribute significantly to the development of recyclable hydrogen tanks.
近年来,碳中和使得氢气罐的受欢迎程度大幅提升。然而,设计高性能的罐体需要精确确定输入材料的特性。不幸的是,传统的表征方法常常低估这些材料特性。为解决这一局限性,当前的研究引入了环形拉伸试样的替代设计,这种设计能够对纤维缠绕结构进行准确可靠的表征。考虑到数值模拟和实验研究,对这些替代设计的优缺点进行了全面讨论。此外,所提出的环形拉伸方法被应用于表征储氢罐的热塑性复合材料。结果表明,碳纤维增强热塑性Elium 591复合材料的机械强度和刚度与环氧基复合材料的机械强度和刚度非常匹配。这种新获得的测量精度有望对可回收氢气罐的开发做出重大贡献。