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Fatigue crack propagation behavior in AISI 304 steel welded joints for cold-stretched liquefied natural gas (LNG) storage tank at cryogenic temperatures

机译:低温下冷拉伸液化天然气(LNG)储罐的AISI 304钢焊接接头的疲劳裂纹扩展行为

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摘要

AISI304 steel welded joints are used in cold-stretched liquefied natural gas (LNG) storage tanks used for storing and transporting of liquefied gases. Compared with a conventional liquefied natural gas storage tank, a cold-stretched liquefied natural gas storage tank has many advantages such as reduced thickness, light weight, low cost and low energy consumption. However, liquefied natural gas storage tanks can be subjected to alternative loads at cryogenic temperatures; thus, it is important to investigate the fatigue crack propagation behavior in AISI 304 steel welded joints at cryogenic temperatures. Specimens were machined from a cold-stretched liquefied natural gas storage tank with a welding structure. The crack length was determined using compliance method and confirmed by examination with traveling microscope. Fatigue crack propagation rates were evaluated at various stress ratios and temperatures. The fatigue crack growth rate of all specimens a little appears the effect of stress ratio, but it has a great influence at a cryogenic temperature. The fatigue crack growth rate of longitudinal welded joint is the fastest at room and cryogenic temperature. Fracture mechanism in the specimen is examined using a scanning electron microscope.
机译:AISI304钢制焊接接头用于冷拉伸液化天然气(LNG)储罐中,该储罐用于存储和运输液化气。与传统的液化天然气储罐相比,冷拉伸液化天然气储罐具有许多优点,例如厚度减小,重量轻,成本低和能耗低。但是,液化天然气储罐可能会在低温下承受替代负荷;因此,研究低温下AISI 304钢焊接接头的疲劳裂纹扩展行为很重要。样品是从具有焊接结构的冷拉伸液化天然气储罐中加工而成的。使用顺应性方法确定裂纹长度,并通过行进显微镜检查确认。在各种应力​​比和温度下评估了疲劳裂纹扩展速率。所有试件的疲劳裂纹扩展率都没有出现应力比的影响,但在低温下影响很大。纵向焊接接头的疲劳裂纹扩展速率在室温和低温下最快。使用扫描电子显微镜检查样品中的断裂机理。

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