储氢压力容器用(Ni)-Cr-Mo高强度低合金无缝管线钢的氢相容性及适用性

A. Nagao, N. Ishikawa, T. Takano
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引用次数: 1

摘要

Cr-Mo和Ni-Cr-Mo高强度低合金钢是高压氢气储存的候选材料。这些钢的锻造材料已经用于这样的环境,同时对具有较低成本的高抗氢脆性能的材料有强烈的需求。因此,本研究研究了由淬火和回火无缝管制成的Cr-Mo和Ni-Cr-Mo钢在高达105 MPa高压氢气中的力学性能。氢的存在使材料的力学性能恶化,表现为局部伸长率降低、断裂韧性降低和疲劳裂纹扩展速度加快,但氢的存在对屈服强度和极限抗拉强度没有影响,对疲劳极限的影响也不大。提出了用这些无缝钢管制成的储氢压力容器的设计方法。
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Hydrogen Compatibility and Suitability of (Ni)-Cr-Mo High-Strength Low-Alloy Seamless Line Pipe Steels for Pressure Vessels for Hydrogen Storage
Cr-Mo and Ni-Cr-Mo high-strength low-alloy steels are candidate materials for the storage of high-pressure hydrogen gas. Forging materials of these steels have been used for such an environment, while there has been a strong demand for a higher performance material with high resistance to hydrogen embrittlement at lower cost. Thus, mechanical properties of Cr-Mo and Ni-Cr-Mo steels made of quenched and tempered seamless pipes in high-pressure hydrogen gas up to 105 MPa were examined in this study. The mechanical properties were deteriorated in the presence of hydrogen that appeared in reduction in local elongation, decrease in fracture toughness and accelerated fatigue-crack growth rate, although the presence of hydrogen did not affect yield and ultimate tensile strengths and made little difference to the fatigue endurance limit. It is proposed that pressure vessels for the storage of gaseous hydrogen made of these seamless line pipe steels can be designed.
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