氢
放气
材料科学
氢气储存
极限抗拉强度
聚乙烯
拉伸试验
复合材料
聚合物
螺线管
化学
机械工程
工程类
有机化学
合金
作者
Kyle J. Alvine,Tyler A. Kafentzis,Stan G. Pitman,K.I. Johnson,Daniel C. Skorski,Joseph C. Tucker,T. Roosendaal,M. E. Dahl
摘要
Degradation of material properties by high-pressure hydrogen is an important factor in determining the safety and reliability of materials used in high-pressure hydrogen storage and delivery. Hydrogen damage mechanisms have a time dependence that is linked to hydrogen outgassing after exposure to the hydrogen atmosphere that makes ex situ measurements of mechanical properties problematic. Designing in situ measurement instruments for high-pressure hydrogen is challenging due to known hydrogen incompatibility with many metals and standard high-power motor materials such as Nd. Here we detail the design and operation of a solenoid based in situ tensile tester under high-pressure hydrogen environments up to 42 MPa (6000 psi). Modulus data from high-density polyethylene samples tested under high-pressure hydrogen at 35 MPa (5000 psi) are also reported as compared to baseline measurements taken in air.
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