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Cryogenic Performance of Adhesively Bonded Metal Joints for LNG Containment System

机译:LNG密闭系统的粘结金属接头的低温性能

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摘要

The cryogenic performance of adhesively bonded joints composed of aluminum sandwich structures and stainless steel foils for LNG (Liquefied Natural Gas) containment system was studied. Surface treatment processes such as mechanical treatment, flame treatment, and sulfuric acid etching were applied to the stainless steel foil, whose morphology and chemical composition were determined by SEM (Scanning electron microscopy) and XPS (X-ray photoelectron spectroscopy) with respect to surface treatment methods. Also, the surface free energies of the stainless steel foils were determined with respect to surface treatment conditions. The bond strengths of the single lap joints composed of aluminum sandwich structures and stainless steel foils were measured using modified test specimens at cryogenic temperature with respect to adhesive thickness and repeated thermal shocks, considering real application conditions. Finally, the applicability of metal foil for the barrier tightness of LNG containment systems was validated and an optimum flame treatment condition was suggested for improving the cryogenic performance of adhesively bonded metal joints with thin stainless steel foils.
机译:研究了由铝夹心结构和不锈钢箔组成的胶粘接头在LNG(液化天然气)密封系统中的低温性能。对不锈钢箔进行了机械处理,火焰处理和硫酸蚀刻等表面处理工艺,并通过SEM(扫描电子显微镜)和XPS(X射线光电子能谱)确定了其形态和化学成分。治疗方法。另外,关于表面处理条件来确定不锈钢箔的表面自由能。考虑到实际应用条件,使用改良的试样在低温下相对于粘合剂厚度和反复的热冲击,测量了由铝夹心结构和不锈钢箔组成的单搭接接头的粘结强度。最后,验证了金属箔在LNG密封系统中的密封性的适用性,并提出了最佳火焰处理条件,以改善薄不锈钢箔粘结金属接头的低温性能。

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