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Thermal ageing process at laboratory scale to evaluate the lifetime of Liquefied Natural Gas storage and loading/unloading materials

机译:实验室规模的热老化过程,用于评估液化天然气储存和装卸材料的寿命

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摘要

Cryogenic materials used for the manufacture of the tanks and the piping systems for Liquefied Natural Gas (LNG) need to remain tough, ductile and crack resistant with a high level of safety. To evaluate the degradations of the mechanical properties of the 9% Ni steel, the 304L stainless steel and the weld metal of the 9% Ni/9% Ni and 304L/304L weld joints, submitted to thermal cycles (cryogenic temperature/room temperature), tensile tests and small punch tests were carried out. Then, the fracture surfaces were observed by scanning electron microscope to identify the fracture modes. X-ray diffraction analysis was employed to reveal phase changes which could promote the degradation in the mechanical properties of these materials. From all the results obtained with mechanical tests after 3000 thermal cycles, no degradation or decrease of mechanical properties has been revealed. The Scanning Electron Microscope observations are in agreement with a ductile fracture behaviour. X-ray analysis results confirm the absence of phase change in these materials. Therefore, it seems that the influence of accelerated thermal ageing at very low temperature on mechanical properties of these materials is negligible.
机译:用于制造液化天然气(LNG)的储罐和管道系统的低温材料需要保持坚韧,易延展和抗裂并具有高度的安全性。为了评估9%Ni钢,304L不锈钢以及9%Ni / 9%Ni和304L / 304L焊接接头的焊缝金属的机械性能的下降,并进行了热循环(低温/室温)进行拉伸试验和小冲头试验。然后,通过扫描电子显微镜观察断裂表面以识别断裂模式。 X射线衍射分析被用来揭示相变,其可以促进这些材料的机械性能的下降。从3000次热循环后的机械测试获得的所有结果中,没有发现机械性能的降低或降低。扫描电子显微镜的观察结果与韧性断裂行为一致。 X射线分析结果证实这些材料中不存在相变。因此,在极低温下加速热老化对这些材料的机械性能的影响似乎可以忽略不计。

著录项

  • 来源
    《Materials & design》 |2013年第2期|283-290|共8页
  • 作者单位

    Universite Lille Nord de France, 59000 Lille, France,UCEIV, FA 4492, ULCO, 145 Avenue Maurice Schumann, 59140 Dunkerque, France;

    Universite Lille Nord de France, 59000 Lille, France,UCEIV, FA 4492, ULCO, 145 Avenue Maurice Schumann, 59140 Dunkerque, France,INNOCOLD, Institut Technologique du Froid, 145 Avenue Maurice Schumann, 59140 Dunkerque, France;

    Universite Lille Nord de France, 59000 Lille, France,UDSMM, FA 4476, ULCO, 145 Avenue Maurice Schumann, 59140 Dunkerque, France,INNOCOLD, Institut Technologique du Froid, 145 Avenue Maurice Schumann, 59140 Dunkerque, France,UDSMM, EA 4476, ULCO, MREI 1 - 145 Avenue Maurice Schumann, 59140 Dunkerque, France;

    Universite Lille Nord de France, 59000 Lille, France,UMEJ, UMR CNRS/USTL/ENSCL 8207, Batiment C6. 59655 Villeneuve d'Ascq. France;

    INNOCOLD, Institut Technologique du Froid, 145 Avenue Maurice Schumann, 59140 Dunkerque, France,Dunkerque LNC, 30 rue Lhermitte, 59140 Dunkerque, France;

    INNOCOLD, Institut Technologique du Froid, 145 Avenue Maurice Schumann, 59140 Dunkerque, France,Dunkerque LNC, 30 rue Lhermitte, 59140 Dunkerque, France;

    Universite Lille Nord de France, 59000 Lille, France,UCEIV, FA 4492, ULCO, 145 Avenue Maurice Schumann, 59140 Dunkerque, France;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    cryogenic steels; cold thermal ageing; mechanical tests;

    机译:低温钢冷热老化;机械测试;

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