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Role of Hydrogen-Charging on Nucleation and Growth of Ductile Damage in Austenitic Stainless Steels

机译:充氢在奥氏体不锈钢中的形核和延展性的增长中的作用

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摘要

Hydrogen energy is a possible solution for storage in the future. The resistance of packaging materials such as stainless steels has to be guaranteed for a possible use of these materials as containers for highly pressurized hydrogen. The effect of hydrogen charging on the nucleation and growth of microdamage in two different austenitic stainless steels AISI316 and AISI316L was studied using in situ tensile tests in synchrotron X-ray tomography. Information about damage nucleation, void growth and void shape were obtained. AISI316 was found to be more sensitive to hydrogen compared to AISI316L in terms of ductility loss. It was measured that void nucleation and growth are not affected by hydrogen charging. The effect of hydrogen was however found to change the morphology of nucleated voids from spherical cavities to micro-cracks being oriented perpendicular to the tensile axis.
机译:氢能是将来存储的可能解决方案。为了保证将这些材料用作高压氢气的容器,必须保证其包装材料的抗性。使用同步加速器X射线断层扫描中的原位拉伸试验研究了氢电荷对两种不同的奥氏体不锈钢AISI316和AISI316L的形核和微损伤生长的影响。获得有关损伤成核,空隙增长和空隙形状的信息。发现AISI316在延展性损失方面比AISI316L对氢更敏感。据测量,空穴成核和生长不受氢电荷的影响。然而,发现氢的作用将有核空隙的形态从球形腔变为垂直于拉伸轴取向的微裂纹。

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