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Hydrogen Permeability of Polymer Matrix Composites at Cryogenic Temperatures

机译:聚合物基复合材料在低温下的氢渗透性

摘要

This paper presents experimental methods and results of an ongoing study of the correlation between damage state and hydrogen gas permeability of laminated composite materials under mechanical strains and thermal loads. A specimen made from IM-7/977-2 composite material has been mechanically cycled at room temperature to induce microcrack damage. Crack density and tensile modulus were observed as functions of number of cycles. Damage development was found to occur most quickly in the off-axis plies near the outside of the laminate. Permeability measurements were made after 170,000 cycles and 430,000 cycles. Leak rate was found to depend on applied mechanical strain, crack density, and test temperature.
机译:本文介绍了机械方法和热载荷下层压复合材料的损伤状态与氢气渗透性之间相关性的实验方法和正在进行的研究结果。由IM-7 / 977-2复合材料制成的样品已在室温下进行机械循环,以引起微裂纹损坏。观察到裂纹密度和拉伸模量是循环次数的函数。发现在层压板外部附近的离轴帘布层中损坏发展最快。在170,000次循环和430,000次循环后进行渗透率测量。发现泄漏率取决于所施加的机械应变,裂纹密度和测试温度。

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